ackA - Escherichia coli K-12

Acetate kinase

> ackA - Escherichia coli K-12 [Acetate kinase]
请在左侧输入序列并点击“更新视图”...



统计信息
序列长度 0
疏水性残基 0
极性残基 0
Legend

Metadata

Organism Source: 83333 - Escherichia coli K-12
EC Number: 2.7.2.1
Cluster:
Registry Model:

Reactions

reaction id name note
KEGG:R00315 ATP:acetate phosphotransferase ATP + Acetate <=> ADP + Acetyl phosphate
KEGG:R01353 ATP:propanoate phosphotransferase ATP + Propanoate <=> ADP + Propanoyl phosphate
BioCyc:PROPKIN-RXN PROPIONATE + ATP<=>PROPIONYL-P + ADP
BioCyc:ACETATEKIN-RXN ATP + ACET<=>ADP + ACETYL-P
Rhea:RHEA:11353 acetate + ATP => acetyl phosphate + ADP
Rhea:RHEA:11354 acetyl phosphate + ADP => acetate + ATP
Rhea:RHEA:11355 acetate + ATP <=> acetyl phosphate + ADP

Pathways

pathway id name
BioCyc:META_PWY-5485 pyruvate fermentation to acetate IV
BioCyc:META_P441-PWY superpathway of N-acetylneuraminate degradation
BioCyc:META_PWY-5437 L-threonine degradation I
BioCyc:ECOL316407_PWY0-1312 acetate formation from acetyl-CoA I
BioCyc:META_THREOCAT-PWY superpathway of L-threonine metabolism
BioCyc:ECO_THREOCAT-PWY superpathway of L-threonine metabolism
BioCyc:ECO_ACETATEUTIL-PWY superpathway of acetate utilization and formation
BioCyc:META_PWY0-1477 ethanolamine utilization
BioCyc:META_PWY-5327 superpathway of L-lysine degradation
BioCyc:META_PWY0-1312 acetate and ATP formation from acetyl-CoA I
BioCyc:META_ACETATEUTIL-PWY superpathway of acetate utilization and formation
BioCyc:ECO_PWY0-1312 acetate and ATP formation from acetyl-CoA I
BioCyc:ECOL316407_FERMENTATION-PWY mixed acid fermentation
BioCyc:ECOL316407_PWY-5437 threonine degradation I
BioCyc:META_FERMENTATION-PWY mixed acid fermentation
BioCyc:ECO_PWY0-1477 ethanolamine utilization
BioCyc:ECO_FERMENTATION-PWY mixed acid fermentation
BioCyc:ECO_PWY-5437 L-threonine degradation I
BioCyc:ECOL316407_ACETATEUTIL-PWY superpathway of acetate utilization and formation
BioCyc:ECOL316407_THREOCAT-PWY superpathway of threonine metabolism
PathBank:SMP0000957 Propanoate Metabolism
PathBank:SMP0002102 Acetate Metabolism