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 Q5FNP1

Entry ID Method Resolution Chain Position Source
AF-Q5FNP1-F1 Predicted AlphaFoldDB

No variants for Q5FNP1

Variant ID(s) Position Change Description Diseaes Association Provenance
No variants for Q5FNP1

No associated diseases with Q5FNP1

7 regional properties for Q5FNP1

Type Name Position InterPro Accession
domain GIY-YIG endonuclease 40 - 122 IPR000305
domain UvrC, RNAse H endonuclease domain 279 - 564 IPR001162
domain UVR domain 228 - 263 IPR001943
domain Helix-hairpin-helix DNA-binding motif, class 1 578 - 597 IPR003583-1
domain Helix-hairpin-helix DNA-binding motif, class 1 610 - 629 IPR003583-2
domain DisA/LigA, helix-hairpin-helix motif 584 - 637 IPR041663
domain UvrC/Cho-like, GIY-YIG domain 38 - 118 IPR047296

Functions

Description
EC Number
Subcellular Localization
  • Cytoplasm
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

2 GO annotations of cellular component

Name Definition
cytoplasm The contents of a cell excluding the plasma membrane and nucleus, but including other subcellular structures.
excinuclease repair complex Any of the protein complexes formed by the UvrABC excinuclease system, which carries out nucleotide excision repair. Three different complexes are formed by the 3 proteins as they proceed through the excision repair process. First a complex consisting of two A subunits and two B subunits bind DNA and unwind it around the damaged site. Then, the A subunits disassociate leaving behind a stable complex between B subunits and DNA. Now, subunit C binds to this B+DNA complex and causes subunit B to nick the DNA on one side of the complex while subunit C nicks the DNA on the other side of the complex. DNA polymerase I and DNA ligase can then repair the resulting gap.

2 GO annotations of molecular function

Name Definition
DNA binding Any molecular function by which a gene product interacts selectively and non-covalently with DNA (deoxyribonucleic acid).
excinuclease ABC activity Catalysis of the hydrolysis of ester linkages within deoxyribonucleic acid at sites flanking regions of damaged DNA to which the Uvr ABC excinuclease complexes bind.

2 GO annotations of biological process

Name Definition
nucleotide-excision repair A DNA repair process in which a small region of the strand surrounding the damage is removed from the DNA helix as an oligonucleotide. The small gap left in the DNA helix is filled in by the sequential action of DNA polymerase and DNA ligase. Nucleotide excision repair recognizes a wide range of substrates, including damage caused by UV irradiation (pyrimidine dimers and 6-4 photoproducts) and chemicals (intrastrand cross-links and bulky adducts).
SOS response An error-prone process for repairing damaged microbial DNA.

No homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
No homologous proteins
10 20 30 40 50 60
MTDLPPHSSH HPADQGEPLV PAEKKQGVEA IREALKTIPY SPGVYRMLSE KGEVLYVGKA
70 80 90 100 110 120
LSLKKRVSSY IRINQLPERL RRMVSMTVSM EIVITRTEAD ALLLEANYIK RMKPRFNILL
130 140 150 160 170 180
RDDKSYPWLM LTESHEFPQI TKQRGKPVKG ATYWGPFANA WAVNQTLNLV QRSFLLRSCS
190 200 210 220 230 240
DAVLNSRTRP CLLYQIKRCS APCVDRISKE DYAELVSEAR QFLSGHSTEL QQRLVAEMEQ
250 260 270 280 290 300
ASQELNYERA ASIRDRIRGF ASIQGSSTIN PTSINDADIM TIWQEAGQSC IQVFFIRGSR
310 320 330 340 350 360
NNGNRAFYPA HAEEETAADV LSAFMIQFYD NKPPPPSILV NCELPEPKLV EEALSIRRGQ
370 380 390 400 410 420
KVEILRPQRG EKKDVVEHAA LNAREALERK LAENTGQRRL LEGVAEVFGL PEIPQRIETY
430 440 450 460 470 480
DNSHIMGQAP YGVMVVGGPE GFNKRAYRKY AIKGPVTPGD DFGMMREVME RRFGHRSENG
490 500 510 520 530 540
ERPEDWPDLL LIDGGLGQFN AVRAVLADLG VTGIPIVAIA KGPDRDAGRE WFFTETKSPF
550 560 570 580 590 600
QLPPRDPVLY YLQRLRDEAH RFAITTHRAG RSKGLRSSEL DHVPGIGAAR KKALLNHFGS
610 620 630 640
AKSVRQASLE ELENAPGISS STATAIYGHF HPEWVQKTSA DNRSH