Sequence Browser (O94851-1)

UniProt (Ref Seq)
Displayed Structure
Experimental Tertiary/Complex (PDB:XRay/EM)
Experimental Tertiary/Complex (PDB:NMR)
Modelled Tertiary (Phyre)
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1
1124
Isoform
Remark
Ref
O94851-1  
VSP_009859 VSP_009860 VSP_009861
VSP_042593 VSP_009861
VSP_042595
VSP_042594 VSP_042596 VSP_009861
VSP_042594
Click on Isoform of interest to be redirected to the corresponding page
Type
Variation
Position
splice variant
Missing
739 - 985
splice variant
Missing
740 - 986
splice variant
Missing
950 - 985
sequence variant
F → L
145
sequence variant
D → E
687
sequence variant
L → P
1106
mutagenesis site
G → V
95
sequence conflict
F → S
19
sequence conflict
T → A
296
sequence conflict
I → V
563
splice variant
Missing
1 - 171
splice variant
Missing
739 - 928
splice variant
Missing
929 - 949
splice variant
VHFSLPVLHPLLG → GISTSFFRKVLGWPLRLPRDLCNWMQGLLQAAGLHIRDNAYNYCYMYELLSLGLPLLWAFSEVLAAMYRESEGSLESICNWVLRCFPVKLR
1112 - 1124
sequence variant
I → V
220
sequence variant
R → Q
1089
sequence variant
P → S
1110
mutagenesis site
KRRRK → AAAAA
677 - 681
sequence conflict
D → G
208
sequence conflict
Q → H
529
sequence conflict
S → Y
631

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Protein:
Other Names:
Molecule interacting with CasL protein 2
Primary Accession:
Other Accessions:
B4DGZ0, B7Z849, D3DQW5, G3XAC8, Q5KTR3, Q5KTR4, Q7Z3A8
Gene :
MICAL2*, synonyms (KIAA0750, MICAL2PV1, MICAL2PV2)
Organism :
Human
Entry Name :
Length :
1,124
Mass (Da) :
126,689
Last modified :
01-Jan-1999
Version :
v1
Isoforms :
6 
Variants :
21 
Interactions :
0 
Structures :
Experimental 1 | Phyre prediction 5

Nuclear monooxygenase that promotes depolymerization of F-actin by mediating oxidation of specific methionine residues on actin to form methionine-sulfoxide, resulting in actin filament disassembly and preventing repolymerization. In the absence of actin, it also functions as a NADPH oxidase producing H(2)O(2) (By similarity). Acts as a key regulator of the SRF signaling pathway elicited by nerve growth factor and serum: mediates oxidation and subsequent depolymerization of nuclear actin, leading to increase MKL1/MRTF-A presence in the nucleus and promote SRF:MKL1/MRTF-A-dependent gene transcription. Does not activate SRF:MKL1/MRTF-A through RhoA.

No interactions reported for this protein.