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 Q9SJ22

Entry ID Method Resolution Chain Position Source
AF-Q9SJ22-F1 Predicted AlphaFoldDB

84 variants for Q9SJ22

Variant ID(s) Position Change Description Diseaes Association Provenance
tmp_2_9284842_C_A 2 N>K No 1000Genomes
ENSVATH13318464 19 L>F No 1000Genomes
ENSVATH01860294 31 A>V No 1000Genomes
tmp_2_9285404_A_T 47 E>V No 1000Genomes
ENSVATH01860295 55 F>L No 1000Genomes
ENSVATH01860296 85 G>R No 1000Genomes
ENSVATH05550454 86 T>A No 1000Genomes
ENSVATH13318480 87 R>P No 1000Genomes
ENSVATH01860301 101 E>D No 1000Genomes
tmp_2_9285671_C_A 111 H>N No 1000Genomes
tmp_2_9285692_C_A 118 P>T No 1000Genomes
ENSVATH01860303 122 T>A No 1000Genomes
ENSVATH05550459 123 E>D No 1000Genomes
ENSVATH00241647 124 A>P No 1000Genomes
ENSVATH00241649 128 Y>D No 1000Genomes
ENSVATH05550461 162 S>F No 1000Genomes
ENSVATH13318499 166 S>L No 1000Genomes
ENSVATH05550462 170 A>V No 1000Genomes
ENSVATH00241651 182 R>K No 1000Genomes
ENSVATH13318500 194 S>P No 1000Genomes
tmp_2_9286161_A_C 217 K>N No 1000Genomes
ENSVATH00241653 220 M>T No 1000Genomes
tmp_2_9286200_G_C 230 K>N No 1000Genomes
ENSVATH13318502 232 Q>R No 1000Genomes
ENSVATH00241654 256 G>E No 1000Genomes
tmp_2_9286370_G_A 259 M>I No 1000Genomes
tmp_2_9286458_C_T 289 L>F No 1000Genomes
ENSVATH13318504 351 K>R No 1000Genomes
ENSVATH00241655 353 G>R No 1000Genomes
ENSVATH01860317 359 A>V No 1000Genomes
ENSVATH05550466 396 A>S No 1000Genomes
ENSVATH13318516 405 A>S No 1000Genomes
ENSVATH05550467 444 M>I No 1000Genomes
ENSVATH00241656 452 D>V No 1000Genomes
ENSVATH14528970 465 D>V No 1000Genomes
ENSVATH01860321 480 S>A No 1000Genomes
tmp_2_9287197_G_A 502 R>Q No 1000Genomes
tmp_2_9287324_G_T 519 D>Y No 1000Genomes
ENSVATH00241657 527 R>S No 1000Genomes
tmp_2_9287520_T_C 557 V>A No 1000Genomes
ENSVATH01860326 561 A>S No 1000Genomes
ENSVATH01860327 575 N>Y No 1000Genomes
ENSVATH05550476 582 A>S No 1000Genomes
tmp_2_9287678_C_T 610 H>Y No 1000Genomes
ENSVATH13318537 652 D>Y No 1000Genomes
ENSVATH01860333 658 Q>K No 1000Genomes
tmp_2_9287961_G_A 676 G>S No 1000Genomes
ENSVATH05550483 679 K>N No 1000Genomes
ENSVATH01860335 685 V>A No 1000Genomes
tmp_2_9287998_A_T 688 N>I No 1000Genomes
ENSVATH05550484 689 Q>K No 1000Genomes
tmp_2_9288005_A_C 690 R>S No 1000Genomes
ENSVATH01860336 694 K>Q No 1000Genomes
ENSVATH01860337 694 K>R No 1000Genomes
ENSVATH01860340 710 L>I No 1000Genomes
ENSVATH01860343 713 T>K No 1000Genomes
tmp_2_9288169_A_G 714 N>S No 1000Genomes
ENSVATH05550486 717 N>Y No 1000Genomes
ENSVATH00241661 736 L>F No 1000Genomes
tmp_2_9288279_G_A 751 V>M No 1000Genomes
tmp_2_9288284_C_A 752 N>K No 1000Genomes
ENSVATH13318539 755 S>C No 1000Genomes
tmp_2_9288345_G_C 773 E>Q No 1000Genomes
tmp_2_9288359_G_C 777 E>D No 1000Genomes
tmp_2_9288445_T_C 778 I>T No 1000Genomes
ENSVATH14528972 794 K>N No 1000Genomes
ENSVATH05550491 797 C>Y No 1000Genomes
tmp_2_9288540_G_A 810 A>T No 1000Genomes
tmp_2_9288597_C_A 829 R>S No 1000Genomes
ENSVATH14528973 833 G>D No 1000Genomes
tmp_2_9288634_G_T 841 R>M No 1000Genomes
tmp_2_9288666_G_A 852 G>S No 1000Genomes
ENSVATH14528974 860 S>P No 1000Genomes
tmp_2_9288711_T_C 867 Y>H No 1000Genomes
ENSVATH13318542 884 C>Y No 1000Genomes
tmp_2_9288959_G_T 911 A>S No 1000Genomes
tmp_2_9288977_G_A 917 E>K No 1000Genomes
ENSVATH00241664 923 I>V No 1000Genomes
tmp_2_9289044_G_A 939 G>E No 1000Genomes
ENSVATH00241665 959 S>N No 1000Genomes
tmp_2_9289259_G_A 1011 G>R No 1000Genomes
ENSVATH13318576 1034 P>Q No 1000Genomes
tmp_2_9289412_A_G 1062 T>A No 1000Genomes
ENSVATH14528996 1076 G>E No 1000Genomes

No associated diseases with Q9SJ22

9 regional properties for Q9SJ22

Type Name Position InterPro Accession
domain ABC transporter-like, ATP-binding domain 423 - 646 IPR003439-1
domain ABC transporter-like, ATP-binding domain 1212 - 1445 IPR003439-2
domain AAA+ ATPase domain 450 - 639 IPR003593-1
domain AAA+ ATPase domain 1238 - 1420 IPR003593-2
domain ABC transporter type 1, transmembrane domain 82 - 349 IPR011527-1
domain ABC transporter type 1, transmembrane domain 860 - 1159 IPR011527-2
conserved_site ABC transporter-like, conserved site 548 - 562 IPR017871
domain CFTR regulator domain 639 - 849 IPR025837
domain Cystic fibrosis transmembrane conductance regulator, ATP-binding cassette domain 1 389 - 670 IPR047082

Functions

Description
EC Number 2.4.1.12 Hexosyltransferases
Subcellular Localization
  • Cell membrane ; Multi-pass membrane protein
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

2 GO annotations of cellular component

Name Definition
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.
plasma membrane The membrane surrounding a cell that separates the cell from its external environment. It consists of a phospholipid bilayer and associated proteins.

3 GO annotations of molecular function

Name Definition
cellulose synthase (UDP-forming) activity Catalysis of the reaction: UDP-glucose + ((1,4)-beta-D-glucosyl)(n) = UDP + ((1,4)-beta-D-glucosyl)(n+1).
cellulose synthase activity Catalysis of the reaction: nucleoside-disphosphate-glucose + ((1,4)-beta-D-glucosyl)(n) = nucleoside-disphosphate + ((1,4)-beta-D-glucosyl)(n+1).
metal ion binding Binding to a metal ion.

4 GO annotations of biological process

Name Definition
cell wall organization A process that results in the assembly, arrangement of constituent parts, or disassembly of the cell wall, the rigid or semi-rigid envelope lying outside the cell membrane of plant, fungal and most prokaryotic cells, maintaining their shape and protecting them from osmotic lysis.
cellulose biosynthetic process The chemical reactions and pathways resulting in the formation of cellulose, a linear beta1-4 glucan of molecular mass 50-400 kDa with the pyranose units in the -4C1 conformation.
plant-type primary cell wall biogenesis A cellular process that results in the biosynthesis of constituent macromolecules, assembly, and arrangement of constituent parts of cellulose and pectin-containing cell walls that form adjacent to the middle lamella following cell division and during cell expansion. An example of this is found in Arabidopsis thaliana.
seed coat development The process whose specific outcome is the progression of the seed coat over time, from its formation to the mature structure.

8 homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
Q69V23 CESA3 Probable cellulose synthase A catalytic subunit 3 [UDP-forming] Oryza sativa subsp japonica (Rice) PR
Q6YVM4 CESA6 Probable cellulose synthase A catalytic subunit 6 [UDP-forming] Oryza sativa subsp japonica (Rice) PR
Q851L8 CESA5 Probable cellulose synthase A catalytic subunit 5 [UDP-forming] Oryza sativa subsp japonica (Rice) PR
O48947 CESA2 Cellulose synthase A catalytic subunit 2 [UDP-forming] Arabidopsis thaliana (Mouse-ear cress) PR
Q94JQ6 CESA6 Cellulose synthase A catalytic subunit 6 [UDP-forming] Arabidopsis thaliana (Mouse-ear cress) PR
O49323 CSLD1 Cellulose synthase-like protein D1 Arabidopsis thaliana (Mouse-ear cress) PR
Q8LPK5 CESA8 Cellulose synthase A catalytic subunit 8 [UDP-forming] Arabidopsis thaliana (Mouse-ear cress) PR
Q9SWW6 CESA7 Cellulose synthase A catalytic subunit 7 [UDP-forming] Arabidopsis thaliana (Mouse-ear cress) PR
10 20 30 40 50 60
MNTGGRLIAG SHNRNEFVLI NADDTARIRS AEELSGQTCK ICRDEIELTD NGEPFIACNE
70 80 90 100 110 120
CAFPTCRPCY EYERREGNQA CPQCGTRYKR IKGSPRVEGD EEDDDIDDLE HEFYGMDPEH
130 140 150 160 170 180
VTEAALYYMR LNTGRGTDEV SHLYSASPGS EVPLLTYCDE DSDMYSDRHA LIVPPSTGLG
190 200 210 220 230 240
NRVHHVPFTD SFASIHTRPM VPQKDLTVYG YGSVAWKDRM EVWKKQQIEK LQVVKNERVN
250 260 270 280 290 300
DGDGDGFIVD ELDDPGLPMM DEGRQPLSRK LPIRSSRINP YRMLIFCRLA ILGLFFHYRI
310 320 330 340 350 360
LHPVNDAFGL WLTSVICEIW FAVSWILDQF PKWYPIERET YLDRLSLRYE KEGKPSELAP
370 380 390 400 410 420
VDVFVSTVDP LKEPPLITAN TVLSILAVDY PVEKVACYVS DDGAAMLTFE ALSYTAEFAR
430 440 450 460 470 480
KWVPFCKKFS IEPRAPEWYF SQKMDYLKHK VDPAFVMERR AMKRDYEEFK VKINALVSVS
490 500 510 520 530 540
QKVPEDGWTM QDGTPWPGNN VRDHPGMIQV FLGHSGVCDM DGNELPRLVY VSREKRPGFD
550 560 570 580 590 600
HHKKAGAMNS LIRVSAVLSN APYLLNVDCD HYINNSKAIR EAMCFMMDPQ SGKKICYVQF
610 620 630 640 650 660
PQRFDGIDRH DRYSNRNVVF FDINMKGLDG IQGPIYVGTG CVFRRQALYG FDAPKKKQPP
670 680 690 700 710 720
GRTCNCWPKW CCLCCGMRKK KTGKVKDNQR KKPKETSKQI HALEHIEEGL QVTNAENNSE
730 740 750 760 770 780
TAQLKLEKKF GQSPVLVAST LLLNGGVPSN VNPASLLRES IQVISCGYEE KTEWGKEIGW
790 800 810 820 830 840
IYGSVTEDIL TGFKMHCHGW RSVYCMPKRA AFKGSAPINL SDRLHQVLRW ALGSVEIFLS
850 860 870 880 890 900
RHCPIWYGYG GGLKWLERFS YINSVVYPWT SLPLLVYCSL PAICLLTGKF IVPEISNYAG
910 920 930 940 950 960
ILFLLMFMSI AVTGILEMQW GKIGIDDWWR NEQFWVIGGV SSHLFALFQG LLKVLAGVST
970 980 990 1000 1010 1020
NFTVTSKAAD DGEFSELYIF KWTSLLIPPT TLLIINIVGV IVGVSDAINN GYDSWGPLFG
1030 1040 1050 1060 1070 1080
RLFFALWVIV HLYPFLKGLL GKQDRVPTII LVWSILLASI LTLLWVRVNP FVSKDGPVLE
ICGLDCLK