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There are several matches for 'amiE'.
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2056 matches
showing page 1 of 103
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organism
protein
1)
Homo sapiens
EXOC6 - Exocyst complex component 6; Component of the exocyst complex involved in the docking of exocytic vesicles with fusion sites on the plasma membrane. Together with RAB11A, RAB3IP, RAB8A, PARD3, PRKCI, ANXA2, CDC42 and DNMBP promotes transcytosis of PODXL to the apical membrane initiation sites (
AMIS
), apical surface formation and lumenogenesis (By similarity).
[a.k.a. XM_017016347, EAW50083.1, ENSP00000360598]
2)
Homo sapiens
RAB3IP - Rab-3A-interacting protein; Guanine nucleotide exchange factor (GEF) which may activate RAB8A and RAB8B. Promotes the exchange of GDP to GTP, converting inactive GDP-bound Rab proteins into their active GTP-bound form. Mediates the release of GDP from RAB8A and RAB8B but not from RAB3A or RAB5. Modulates actin organization and promotes polarized transport of RAB8A-specific vesicles to the cell surface. Together with RAB11A, RAB8A, the exocyst complex, PARD3, PRKCI, ANXA2, CDC42 and DNMBP promotes transcytosis of PODXL to the apical membrane initiation sites (
AMIS
), apical surface forma [...]
[a.k.a. XR_001748572.2, ENST00000247833.11, Q96QF0]
3)
Acaryochloris marina
amiE
- Aliphatic amidase.
4)
Accumulibacter sp. BA92
amiE
- Aliphatic amidase.
5)
Accumulibacter sp. BA93
amiE
- Aliphatic amidase.
6)
Accumulibacter sp. SK12
amiE
- Aliphatic amidase.
7)
Achromobacter insolitus
amiE
- Acylamide amidohydrolase; Aliphatic amidase; catalyzes the hydrolysis of short-chain aliphatic amides to their organic acids and can also transfer the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates; Derived by automated computational analysis using gene prediction method: Protein Homology.
8)
Achromobacter xylosoxidans
amiE
- Aliphatic amidase.
9)
Acidihalobacter prosperus
amiE
- Acylamide amidohydrolase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
10)
Acidipropionibacterium jensenii
amiE
- Unannotated protein.
11)
Acidovorax sp. Leaf160
amiE
- Acylamide amidohydrolase; Aliphatic amidase; catalyzes the hydrolysis of short-chain aliphatic amides to their organic acids and can also transfer the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates; Derived by automated computational analysis using gene prediction method: Protein Homology.
12)
Acidovorax sp. Root217
amiE
- Acylamide amidohydrolase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
13)
Acinetobacter equi
amiE
- Acylamide amidohydrolase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
14)
Acinetobacter gerneri
amiE
- Unannotated protein; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
15)
Acinetobacter larvae
amiE
- Acylamide amidohydrolase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
16)
Acinetobacter rudis
amiE
- Unannotated protein; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
17)
Acinetobacter schindleri
amiE
- Aliphatic amidase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
18)
Acinetobacter sp. DSM 11652
amiE
- Amidase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
19)
Acinetobacter sp. NCu2D2
amiE
- Acylamide amidohydrolase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
20)
Acinetobacter sp. SFD
amiE
- Acylamide amidohydrolase; Also exhibits in vitro acyl transferase activity, transferring the acyl moiety of short-chain amides to hydroxylamine to form hydroxamates.
2056 matches
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