Descriptions

The autoinhibited protein was predicted that may have potential autoinhibitory elements via cis-regPred.

Autoinhibitory domains (AIDs)

Target domain

Relief mechanism

Assay

cis-regPred

Accessory elements

No accessory elements

Autoinhibited structure

Activated structure

1 structures for Q9JJV9

Entry ID Method Resolution Chain Position Source
AF-Q9JJV9-F1 Predicted AlphaFoldDB

91 variants for Q9JJV9

Variant ID(s) Position Change Description Diseaes Association Provenance
rs3389070286 17 T>N No EVA
rs252874141 39 S>L No EVA
rs3389087304 40 Q>H No EVA
rs226263944 43 R>H No EVA
rs3389082425 48 E>D No EVA
rs3389083633 52 P>S No EVA
rs3389070296 71 P>L No EVA
rs3389082443 74 E>D No EVA
rs3389077605 75 L>F No EVA
rs3399647459 86 F>V No EVA
rs3389026705 106 S>N No EVA
rs3389057505 120 V>E No EVA
rs3389093119 139 C>* No EVA
rs3400793959 166 A>D No EVA
rs3389083693 175 K>E No EVA
rs3389080972 199 S>N No EVA
rs3389080963 200 V>E No EVA
rs3389082545 211 D>N No EVA
rs3389077550 213 G>D No EVA
rs3389062407 251 A>V No EVA
rs3389062405 299 I>M No EVA
rs3389093124 300 V>F No EVA
rs3389077609 301 W>R No EVA
rs3389026755 303 S>F No EVA
rs3389082586 341 C>Y No EVA
rs3389074712 345 G>S No EVA
rs3389083651 475 R>S No EVA
rs3389082594 490 G>R No EVA
rs3389050471 501 D>E No EVA
rs3389083643 562 L>P No EVA
rs3389050487 566 P>L No EVA
rs3389026743 609 A>T No EVA
rs3389086015 652 G>D No EVA
rs3389077582 664 S>R No EVA
rs3389050451 671 S>R No EVA
rs3389093167 823 P>H No EVA
rs3389077621 950 T>I No EVA
rs3389082393 952 P>R No EVA
rs3389062370 965 L>V No EVA
rs3389050535 968 I>T No EVA
rs3389082446 979 T>I No EVA
rs3400884179 984 C>R No EVA
rs3389050441 992 K>* No EVA
rs3389083652 993 K>N No EVA
rs3389082379 1001 S>T No EVA
rs30071926 1008 A>T No EVA
rs3389070277 1009 A>G No EVA
rs30428633 1009 A>T No EVA
rs3389057506 1009 A>V No EVA
rs3402644545 1011 R>G No EVA
rs3389077620 1018 V>M No EVA
rs3389080912 1037 G>VSDG* No EVA
rs3389087314 1039 G>V No EVA
rs3389082374 1040 T>S No EVA
rs3389057490 1061 Q>H No EVA
rs3389057424 1062 E>* No EVA
rs3389082433 1073 E>G No EVA
rs248039010 1133 T>S No EVA
rs46738906 1191 K>M No EVA
rs3389091743 1231 L>M No EVA
rs3389062410 1292 T>N No EVA
rs3389062403 1305 R>T No EVA
rs3389087297 1314 R>K No EVA
rs3389090783 1316 L>V No EVA
rs3389082623 1319 F>I No EVA
rs3389082555 1332 A>P No EVA
rs3389087352 1350 F>S No EVA
rs1134658765 1391 V>M No EVA
rs3389057437 1398 T>I No EVA
rs3389087348 1409 A>T No EVA
rs3389082394 1453 V>A No EVA
rs3389026770 1454 V>F No EVA
rs3389091690 1464 L>P No EVA
rs3389091658 1477 Q>R No EVA
rs3400174286 1534 V>A No EVA
rs3389081001 1554 Q>H No EVA
rs3389074768 1561 I>N No EVA
rs3389057460 1564 K>N No EVA
rs3389085961 1592 S>I No EVA
rs3389057472 1642 A>D No EVA
rs3389057454 1647 T>M No EVA
rs3389074779 1654 M>L No EVA
rs3389085977 1676 F>I No EVA
rs3389062428 1730 C>F No EVA
rs3389080957 1756 T>I No EVA
rs3389062393 1774 L>Q No EVA
rs3400536625 1830 A>G No EVA
rs3389062397 1939 L>I No EVA
rs3389062429 1957 E>V No EVA
rs221725406 1963 S>G No EVA
rs3389082629 2016 E>* No EVA

No associated diseases with Q9JJV9

7 regional properties for Q9JJV9

Type Name Position InterPro Accession
domain Ion transport domain 130 - 422 IPR005821-1
domain Ion transport domain 718 - 945 IPR005821-2
domain Ion transport domain 1206 - 1481 IPR005821-3
domain Ion transport domain 1530 - 1784 IPR005821-4
domain Sodium ion transport-associated domain 955 - 1202 IPR010526
domain Voltage-gated Na+ ion channel, cytoplasmic domain 508 - 667 IPR024583
domain Voltage-gated sodium channel alpha subunit, inactivation gate 1473 - 1525 IPR044564

Functions

Description
EC Number
Subcellular Localization
  • Cell membrane ; Multi-pass membrane protein
  • Cytoplasm, perinuclear region
  • Cell membrane, sarcolemma, T-tubule
  • Cell junction
  • RANGRF promotes trafficking to the cell membrane
  • Colocalizes with PKP2 at intercalated disks in the heart (By similarity)
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

15 GO annotations of cellular component

Name Definition
caveola A membrane raft that forms small pit, depression, or invagination that communicates with the outside of a cell and extends inward, indenting the cytoplasm and the cell membrane. Examples include flask-shaped invaginations of the plasma membrane in adipocytes associated with caveolin proteins, and minute pits or incuppings of the cell membrane formed during pinocytosis. Caveolae may be pinched off to form free vesicles within the cytoplasm.
cell surface The external part of the cell wall and/or plasma membrane.
endoplasmic reticulum The irregular network of unit membranes, visible only by electron microscopy, that occurs in the cytoplasm of many eukaryotic cells. The membranes form a complex meshwork of tubular channels, which are often expanded into slitlike cavities called cisternae. The ER takes two forms, rough (or granular), with ribosomes adhering to the outer surface, and smooth (with no ribosomes attached).
integral component of membrane The component of a membrane consisting of the gene products and protein complexes having at least some part of their peptide sequence embedded in the hydrophobic region of the membrane.
intercalated disc A complex cell-cell junction at which myofibrils terminate in cardiomyocytes; mediates mechanical and electrochemical integration between individual cardiomyocytes. The intercalated disc contains regions of tight mechanical attachment (fasciae adherentes and desmosomes) and electrical coupling (gap junctions) between adjacent cells.
lateral plasma membrane The portion of the plasma membrane at the lateral side of the cell. In epithelial cells, lateral plasma membranes are on the sides of cells which lie at the interface of adjacent cells.
nucleolus A small, dense body one or more of which are present in the nucleus of eukaryotic cells. It is rich in RNA and protein, is not bounded by a limiting membrane, and is not seen during mitosis. Its prime function is the transcription of the nucleolar DNA into 45S ribosomal-precursor RNA, the processing of this RNA into 5.8S, 18S, and 28S components of ribosomal RNA, and the association of these components with 5S RNA and proteins synthesized outside the nucleolus. This association results in the formation of ribonucleoprotein precursors; these pass into the cytoplasm and mature into the 40S and 60S subunits of the ribosome.
nucleoplasm That part of the nuclear content other than the chromosomes or the nucleolus.
perinuclear region of cytoplasm Cytoplasm situated near, or occurring around, the nucleus.
plasma membrane The membrane surrounding a cell that separates the cell from its external environment. It consists of a phospholipid bilayer and associated proteins.
sarcolemma The outer membrane of a muscle cell, consisting of the plasma membrane, a covering basement membrane (about 100 nm thick and sometimes common to more than one fiber), and the associated loose network of collagen fibers.
sodium channel complex An ion channel complex through which sodium ions pass.
T-tubule Invagination of the plasma membrane of a muscle cell that extends inward from the cell surface around each myofibril. The ends of T-tubules make contact with the sarcoplasmic reticulum membrane.
voltage-gated sodium channel complex A sodium channel in a cell membrane whose opening is governed by the membrane potential.
Z disc Platelike region of a muscle sarcomere to which the plus ends of actin filaments are attached.

17 GO annotations of molecular function

Name Definition
ankyrin binding Binding to ankyrin, a 200 kDa cytoskeletal protein that attaches other cytoskeletal proteins to integral membrane proteins.
calmodulin binding Binding to calmodulin, a calcium-binding protein with many roles, both in the calcium-bound and calcium-free states.
enzyme binding Binding to an enzyme, a protein with catalytic activity.
fibroblast growth factor binding Binding to a fibroblast growth factor.
nitric-oxide synthase binding Binding to nitric-oxide synthase.
protein domain specific binding Binding to a specific domain of a protein.
protein kinase binding Binding to a protein kinase, any enzyme that catalyzes the transfer of a phosphate group, usually from ATP, to a protein substrate.
scaffold protein binding Binding to a scaffold protein. Scaffold proteins are crucial regulators of many key signaling pathways. Although not strictly defined in function, they are known to interact and/or bind with multiple members of a signaling pathway, tethering them into complexes.
transmembrane transporter binding Binding to a transmembrane transporter, a protein or protein complex that enables the transfer of a substance, usually a specific substance or a group of related substances, from one side of a membrane to the other.
ubiquitin protein ligase binding Binding to a ubiquitin protein ligase enzyme, any of the E3 proteins.
voltage-gated ion channel activity Enables the transmembrane transfer of an ion by a voltage-gated channel. An ion is an atom or group of atoms carrying an electric charge by virtue of having gained or lost one or more electrons. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
voltage-gated sodium channel activity Enables the transmembrane transfer of a sodium ion by a voltage-gated channel. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
voltage-gated sodium channel activity involved in AV node cell action potential Enables the transmembrane transfer of a sodium ion by a voltage-gated channel through the plasma membrane of an AV node cardiac muscle cell contributing to the depolarization phase of an action potential. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
voltage-gated sodium channel activity involved in bundle of His cell action potential Enables the transmembrane transfer of a sodium ion by a voltage-gated channel through the plasma membrane of a bundle of His cardiac muscle cell contributing to the depolarization phase of an action potential. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
voltage-gated sodium channel activity involved in cardiac muscle cell action potential Enables the transmembrane transfer of a sodium ion by a voltage-gated channel through the plasma membrane of a cardiac muscle cell contributing to the depolarization phase of an action potential. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
voltage-gated sodium channel activity involved in Purkinje myocyte action potential Enables the transmembrane transfer of a sodium ion by a voltage-gated channel through the plasma membrane of a Purkinje myocyte contributing to the depolarization phase of an action potential. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.
voltage-gated sodium channel activity involved in SA node cell action potential Enables the transmembrane transfer of a sodium ion by a voltage-gated channel through the plasma membrane of an SA node cardiac muscle cell contributing to the depolarization phase of an action potential. A voltage-gated channel is a channel whose open state is dependent on the voltage across the membrane in which it is embedded.

36 GO annotations of biological process

Name Definition
atrial cardiac muscle cell action potential An action potential that occurs in an atrial cardiac muscle cell.
AV node cell action potential An action potential that occurs in an atrioventricular node cardiac muscle cell.
AV node cell to bundle of His cell communication The process that mediates interactions between an AV node cell and its surroundings that contributes to the process of the AV node cell communicating with a bundle of His cell in cardiac conduction. Encompasses interactions such as signaling or attachment between one cell and another cell, between a cell and an extracellular matrix, or between a cell and any other aspect of its environment.
bundle of His cell action potential An action potential that occurs in a bundle of His cell.
cardiac muscle cell action potential involved in contraction An action potential that occurs in a cardiac muscle cell and is involved in its contraction.
cardiac muscle contraction Muscle contraction of cardiac muscle tissue.
cardiac ventricle development The process whose specific outcome is the progression of a cardiac ventricle over time, from its formation to the mature structure. A cardiac ventricle receives blood from a cardiac atrium and pumps it out of the heart.
cellular response to calcium ion Any process that results in a change in state or activity of a cell (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a calcium ion stimulus.
membrane depolarization The process in which membrane potential decreases with respect to its steady-state potential, usually from negative potential to a more positive potential. For example, the initial depolarization during the rising phase of an action potential is in the direction from the negative steady-state resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during action potential The process in which membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during atrial cardiac muscle cell action potential The process in which atrial cardiac muscle cell membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during AV node cell action potential The process in which AV node cardiac muscle cell membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during bundle of His cell action potential The process in which bundle of His cardiac muscle cell membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during cardiac muscle cell action potential The process in which cardiac muscle cell membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during Purkinje myocyte cell action potential The process in which Purkinje myocyte membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
membrane depolarization during SA node cell action potential The process in which SA node cardiac muscle cell membrane potential changes in the depolarizing direction from the negative resting potential towards the positive membrane potential that will be the peak of the action potential.
neuronal action potential An action potential that occurs in a neuron.
positive regulation of action potential Any process that activates or increases the frequency, rate or extent of action potential creation, propagation or termination. This typically occurs via modulation of the activity or expression of voltage-gated ion channels.
positive regulation of epithelial cell proliferation Any process that activates or increases the rate or extent of epithelial cell proliferation.
positive regulation of heart rate Any process that activates or increases the frequency or rate of heart contraction.
positive regulation of sodium ion transport Any process that increases the frequency, rate or extent of the directed movement of sodium ions (Na+) into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
regulation of atrial cardiac muscle cell membrane depolarization Any process that modulates the establishment or extent of a membrane potential in the depolarizing direction away from the resting potential in an atrial cardiomyocyte.
regulation of atrial cardiac muscle cell membrane repolarization Any process that modulates the establishment or extent of a membrane potential in the polarizing direction towards the resting potential in an atrial cardiomyocyte.
regulation of cardiac muscle cell contraction Any process that modulates the frequency, rate or extent of cardiac muscle cell contraction.
regulation of heart rate Any process that modulates the frequency or rate of heart contraction.
regulation of heart rate by cardiac conduction A cardiac conduction process that modulates the frequency or rate of heart contraction.
regulation of sodium ion transmembrane transport Any process that modulates the frequency, rate or extent of sodium ion transmembrane transport.
regulation of ventricular cardiac muscle cell membrane depolarization Any process that modulates the establishment or extent of a membrane potential in the depolarizing direction away from the resting potential in a ventricular cardiomyocyte.
regulation of ventricular cardiac muscle cell membrane repolarization Any process that modulates the establishment or extent of a membrane potential in the polarizing direction towards the resting potential in a ventricular cardiomyocyte.
response to denervation involved in regulation of muscle adaptation Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a denervation stimulus. This process occurs as part of the regulation of muscle adaptation.
response to organic cyclic compound Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of an organic cyclic compound stimulus.
SA node cell action potential An action potential that occurs in a sinoatrial node cardiac muscle cell.
sodium ion import across plasma membrane The directed movement of sodium ions from outside of a cell, across the plasma membrane and into the cytosol.
sodium ion transmembrane transport A process in which a sodium ion is transported from one side of a membrane to the other by means of some agent such as a transporter or pore.
sodium ion transport The directed movement of sodium ions (Na+) into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
ventricular cardiac muscle cell action potential An action potential that occurs in a ventricular cardiac muscle cell.

16 homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
Q6YLX9 TPC1 Two pore calcium channel protein 1 Triticum aestivum (Wheat) PR
P91645 MED20 Voltage-dependent calcium channel type A subunit alpha-1 Drosophila melanogaster (Fruit fly) PR
Q86XQ3 CATSPER3 Cation channel sperm-associated protein 3 Homo sapiens (Human) PR
Q9UQD0 SCN8A Sodium channel protein type 8 subunit alpha Homo sapiens (Human) PR
Q96P56 CATSPER2 Cation channel sperm-associated protein 2 Homo sapiens (Human) PR
Q9Y5Y9 SCN10A Sodium channel protein type 10 subunit alpha Homo sapiens (Human) PR
Q14524 SCN5A Sodium channel protein type 5 subunit alpha Homo sapiens (Human) PR
A2ARP9 Catsper2 Cation channel sperm-associated protein 2 Mus musculus (Mouse) PR
Q62205 Scn9a Sodium channel protein type 9 subunit alpha Mus musculus (Mouse) PR
Q6QIY3 Scn10a Sodium channel protein type 10 subunit alpha Mus musculus (Mouse) PR
Q9WTU3 Scn8a Sodium channel protein type 8 subunit alpha Mus musculus (Mouse) PR
O88420 Scn8a Sodium channel protein type 8 subunit alpha Rattus norvegicus (Rat) PR
O88457 Scn11a Sodium channel protein type 11 subunit alpha Rattus norvegicus (Rat) PR
Q62968 Scn10a Sodium channel protein type 10 subunit alpha Rattus norvegicus (Rat) PR
Q5QM84 TPC1 Two pore calcium channel protein 1 Oryza sativa subsp japonica (Rice) PR
Q94KI8 TPC1 Two pore calcium channel protein 1 Arabidopsis thaliana (Mouse-ear cress) PR
10 20 30 40 50 60
MANFLLPRGT SSFRRFTRES LAAIEKRMAE KQARGSATSQ ESREGLPEEE APRPQLDLQA
70 80 90 100 110 120
SKKLPDLYGN PPRELIGEPL EDLDPFYSTQ KTFIVLNKGK TIFRFSATNA LYVLSPFHPV
130 140 150 160 170 180
RRAAVKILVH SLFSMLIMCT ILTNCVFMAQ HDPPPWTKYV EYTFTAIYTF ESLVKILARG
190 200 210 220 230 240
FCLHAFTFLR DPWNWLDFSV IVMAYTTEFV DLGNVSALRT FRVLRALKTI SVISGLKTIV
250 260 270 280 290 300
GALIQSVKKL ADVMVLTVFC LSVFALIGLQ LFMGNLRHKC VRNFTELNGT NGSVEADGIV
310 320 330 340 350 360
WNSLDVYLND PANYLLKNGT TDVLLCGNSS DAGTCPEGYR CLKAGENPDH GYTSFDSFAW
370 380 390 400 410 420
AFLALFRLMT QDCWERLYQQ TLRSAGKIYM IFFMLVIFLG SFYLVNLILA VVAMAYEEQN
430 440 450 460 470 480
QATIAETEEK EKRFQEAMEM LKKEHEALTI RGVDTVSRSS LEMSPLAPVT NHERRSKRRK
490 500 510 520 530 540
RLSSGTEDGG DDRLPKSDSE DGPRALNQLS LTHGLSRTSM RPRSSRGSIF TFRRRDQGSE
550 560 570 580 590 600
ADFADDENST AGESESHRTS LLVPWPLRRP STQGQPGFGT SAPGHVLNGK RNSTVDCNGV
610 620 630 640 650 660
VSLLGAGDAE ATSPGSHLLR PIVLDRPPDT TTPSEEPGGP QMLTPQAPCA DGFEEPGARQ
670 680 690 700 710 720
RALSAVSVLT SALEELEESH RKCPPCWNRF AQHYLIWECC PLWMSIKQKV KFVVMDPFAD
730 740 750 760 770 780
LTITMCIVLN TLFMALEHYN MTAEFEEMLQ VGNLVFTGIF TAEMTFKIIA LDPYYYFQQG
790 800 810 820 830 840
WNIFDSIIVI LSLMELGLSR MGNLSVLRSF RLLRVFKLAK SWPTLNTLIK IIGNSVGALG
850 860 870 880 890 900
NLTLVLAIIV FIFAVVGMQL FGKNYSELRH RISDSGLLPR WHMMDFFHAF LIIFRILCGE
910 920 930 940 950 960
WIETMWDCME VSGQSLCLLV FLLVMVIGNL VVLNLFLALL LSSFSADNLT APDEDGEMNN
970 980 990 1000 1010 1020
LQLALARIQR GLRFVKRTTW DFCCGLLRRR PKKPAALATH SQLPSCIAAP RSPPPPEVEK
1030 1040 1050 1060 1070 1080
APPARKETRF EEDKRPGQGT PGDTEPVCVP IAVAESDTDD QEEDEENSLG TEEEESSKQE
1090 1100 1110 1120 1130 1140
SQVVSGGHEP PQEPRAWSQV SETTSSEAEA STSQADWQQE REAEPRAPGC GETPEDSYSE
1150 1160 1170 1180 1190 1200
GSTADMTNTA DLLEQIPDLG EDVKDPEDCF TEGCVRRCPC CMVDTTQAPG KVWWRLRKTC
1210 1220 1230 1240 1250 1260
YRIVEHSWFE TFIIFMILLS SGALAFEDIY LEERKTIKVL LEYADKMFTY VFVLEMLLKW
1270 1280 1290 1300 1310 1320
VAYGFKKYFT NAWCWLDFLI VDVSLVSLVA NTLGFAEMGP IKSLRTLRAL RPLRALSRFE
1330 1340 1350 1360 1370 1380
GMRVVVNALV GAIPSIMNVL LVCLIFWLIF SIMGVNLFAG KFGRCINQTE GDLPLNYTIV
1390 1400 1410 1420 1430 1440
NNKSECESFN VTGELYWTKV KVNFDNVGAG YLALLQVATF KGWMDIMYAA VDSRGYEEQP
1450 1460 1470 1480 1490 1500
QWEDNLYMYI YFVVFIIFGS FFTLNLFIGV IIDNFNQQKK KLGGQDIFMT EEQKKYYNAM
1510 1520 1530 1540 1550 1560
KKLGSKKPQK PIPRPLNKYQ GFIFDIVTKQ AFDVTIMFLI CLNMVTMMVE TDDQSPEKVN
1570 1580 1590 1600 1610 1620
ILAKINLLFV AIFTGECIVK MAALRHYYFT NSWNIFDFVV VILSIVGTVL SDIIQKYFFS
1630 1640 1650 1660 1670 1680
PTLFRVIRLA RIGRILRLIR GAKGIRTLLF ALMMSLPALF NIGLLLFLVM FIYSIFGMAN
1690 1700 1710 1720 1730 1740
FAYVKWEAGI DDMFNFQTFA NSMLCLFQIT TSAGWDGLLS PILNTGPPYC DPNLPNSNGS
1750 1760 1770 1780 1790 1800
RGNCGSPAVG ILFFTTYIII SFLIVVNMYI AIILENFSVA TEESTEPLSE DDFDMFYEIW
1810 1820 1830 1840 1850 1860
EKFDPEATQF IEYLALSDFA DALSEPLRIA KPNQISLINM DLPMVSGDRI HCMDILFAFT
1870 1880 1890 1900 1910 1920
KRVLGESGEM DALKIQMEEK FMAANPSKIS YEPITTTLRR KHEEVSATVI QRAFRRHLLQ
1930 1940 1950 1960 1970 1980
RSVKHASFLF RQQAGSSGLS DEDAPEREGL IAYMMNENFS RRSGPLSSSS ISSTSFPPSY
1990 2000 2010
DSVTRATSDN LPVRASDYSR SEDLADFPPS PDRDRESIV