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 Q69T31

Entry ID Method Resolution Chain Position Source
AF-Q69T31-F1 Predicted AlphaFoldDB

No variants for Q69T31

Variant ID(s) Position Change Description Diseaes Association Provenance
No variants for Q69T31

No associated diseases with Q69T31

No regional properties for Q69T31

Type Name Position InterPro Accession
No domain, repeats, and functional sites for Q69T31

Functions

Description
EC Number 3.2.1.26 Glycosidases, ie enzymes hydrolyzing O- and S-glycosyl compounds
Subcellular Localization
  • Cytoplasm, cytosol
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

1 GO annotations of cellular component

Name Definition
cytosol The part of the cytoplasm that does not contain organelles but which does contain other particulate matter, such as protein complexes.

2 GO annotations of molecular function

Name Definition
glycopeptide alpha-N-acetylgalactosaminidase activity Catalysis of the reaction: D-galactosyl-3-(N-acetyl-alpha-D-galactosaminyl)-L-serine + H2O = D-galactosyl-3-N-acetyl-alpha-D-galactosamine + L-serine in mucin-type glycoproteins.
sucrose alpha-glucosidase activity Catalysis of the reaction: sucrose + H2O = alpha-D-glucose + beta-D-fructose.

5 GO annotations of biological process

Name Definition
lateral root formation The process that gives rise to a lateral root. This process pertains to the initial formation of a structure from unspecified parts. A lateral root primordium represents an organized group of cells derived from the root pericycle that will differentiate into a new root, as opposed to the initiation of the main root from the embryo proper.
pollen development The process whose specific outcome is the progression of the pollen grain over time, from its formation to the mature structure. The process begins with the meiosis of the microsporocyte to form four haploid microspores. The nucleus of each microspore then divides by mitosis to form a two-celled organism, the pollen grain, that contains a tube cell as well as a smaller generative cell. The pollen grain is surrounded by an elaborate cell wall. In some species, the generative cell immediately divides again to give a pair of sperm cells. In most flowering plants, however this division takes place later, in the tube that develops when a pollen grain germinates.
primary root development The process whose specific outcome is the progression of the primary root over time, from its formation to the mature structure. The primary root develops directly from the embryonic radicle.
regulation of timing of transition from vegetative to reproductive phase The process controlling the point in time during development when a vegetative meristem will change its identity to become an inflorescence or floral meristem, and/or the rate at which the change occurs.
sucrose catabolic process The chemical reactions and pathways resulting in the breakdown of sucrose, the disaccharide fructofuranosyl-glucopyranoside.

5 homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
Q10MC0 NIN1 Neutral/alkaline invertase 1, mitochondrial Oryza sativa subsp japonica (Rice) PR
Q6H6N5 NIN3 Neutral/alkaline invertase 3, chloroplastic Oryza sativa subsp japonica (Rice) PR
F4I2X9 INVD Probable alkaline/neutral invertase D Arabidopsis thaliana (Mouse-ear cress) PR
Q9C560 INVF Probable alkaline/neutral invertase F Arabidopsis thaliana (Mouse-ear cress) PR
Q9LQF2 CINV1 Alkaline/neutral invertase CINV1 Arabidopsis thaliana (Mouse-ear cress) PR
10 20 30 40 50 60
MELAVGAGGM RRSASHTSLS ESDDFDLSRL LNKPRINVER QRSFDDRSLS DVSYSGGGHG
70 80 90 100 110 120
GTRGGFDGMY SPGGGLRSLV GTPASSALHS FEPHPIVGDA WEALRRSLVF FRGQPLGTIA
130 140 150 160 170 180
AFDHASEEVL NYDQVFVRDF VPSALAFLMN GEPEIVRHFL LKTLLLQGWE KKVDRFKLGE
190 200 210 220 230 240
GAMPASFKVL HDSKKGVDTL HADFGESAIG RVAPVDSGFW WIILLRAYTK STGDLTLAET
250 260 270 280 290 300
PECQKGMRLI LSLCLSEGFD TFPTLLCADG CCMIDRRMGV YGYPIEIQAL FFMALRCALQ
310 320 330 340 350 360
LLKHDNEGKE FVERIATRLH ALSYHMRSYY WLDFQQLNDI YRYKTEEYSH TAVNKFNVIP
370 380 390 400 410 420
DSIPDWLFDF MPCQGGFFIG NVSPARMDFR WFALGNMIAI LSSLATPEQS TAIMDLIEER
430 440 450 460 470 480
WEELIGEMPL KICYPAIENH EWRIVTGCDP KNTRWSYHNG GSWPVLLWLL TAACIKTGRP
490 500 510 520 530 540
QIARRAIDLA ERRLLKDGWP EYYDGKLGRY VGKQARKFQT WSIAGYLVAK MMLEDPSHLG
550 560
MISLEEDKAM KPVLKRSASW TN