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 P16096

Entry ID Method Resolution Chain Position Source
AF-P16096-F1 Predicted AlphaFoldDB

No variants for P16096

Variant ID(s) Position Change Description Diseaes Association Provenance
No variants for P16096

No associated diseases with P16096

1 regional properties for P16096

Type Name Position InterPro Accession
conserved_site Fructose-bisphosphate aldolase class-I active site 257 - 267 IPR029768

Functions

Description
EC Number 4.1.2.13 Aldehyde-lyases
Subcellular Localization
  • Plastid, chloroplast
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

2 GO annotations of cellular component

Name Definition
chloroplast A chlorophyll-containing plastid with thylakoids organized into grana and frets, or stroma thylakoids, and embedded in a stroma.
protein-containing complex A stable assembly of two or more macromolecules, i.e. proteins, nucleic acids, carbohydrates or lipids, in which at least one component is a protein and the constituent parts function together.

2 GO annotations of molecular function

Name Definition
fructose-bisphosphate aldolase activity Catalysis of the reaction: D-fructose 1,6-bisphosphate = glycerone phosphate + D-glyceraldehyde-3-phosphate.
protein self-association Binding to a domain within the same polypeptide.

2 GO annotations of biological process

Name Definition
fructose 1,6-bisphosphate metabolic process The chemical reactions and pathways involving fructose 1,6-bisphosphate, also known as FBP. The D enantiomer is a metabolic intermediate in glycolysis and gluconeogenesis.
glycolytic process The chemical reactions and pathways resulting in the breakdown of a carbohydrate into pyruvate, with the concomitant production of a small amount of ATP and the reduction of NAD(P) to NAD(P)H. Glycolysis begins with the metabolism of a carbohydrate to generate products that can enter the pathway and ends with the production of pyruvate. Pyruvate may be converted to acetyl-coenzyme A, ethanol, lactate, or other small molecules.

No homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
No homologous proteins
10 20 30 40 50 60
MASASLLKTS PVLDNPEFLK GQTLRIPSVA GVRFTPSGSS SLTVRASSYA DELVKTAKTV
70 80 90 100 110 120
ASPGRGILAM DESNATCGKR LASIGLENTE ANRQAYRTLL ISAPGLGQYV SGAILFEETL
130 140 150 160 170 180
YQSTTDGKKM VDVLIEQGIV PGIKVDKGWL PLPGSNDESW CQGLDGLACR SAAYYQQGAR
190 200 210 220 230 240
FAKWRTVVSI PNGPSALAVK EAAWGLARYA AITQDNGLDP ILEPEIMLDG EHGIDRTFRV
250 260 270 280 290 300
AQQVWAEVFF NLAENNVLLE GSSLKPSMVG PGALSARKGP PEQVADYPLK LLHRRRGPVV
310 320 330 340 350 360
PGIMVLSGGQ SEVEATLNLN AMNQSPNPWH VSFSYARALQ NTCLKTWVEG QENVKAQDFA
370 380 390
CAKSNSLAQL GKYTGEGESE ERKKDMFVKA TLTY