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S100A10

Gene
S100A10
Protein
Protein S100-A10
Organism
Bos taurus
Length
97 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.203 kDa
Sequence
MPSQMEHAMETMMFTFHKFAGDKGYLTKEDLRVLMEKEFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFFSLIAGLTIACNDYFVVHMKQKGKK

Gene
S100A10
Protein
Protein S100-A10
Organism
Gallus gallus
Length
97 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.29 kDa
Sequence
MPSQMEHAMETLMFTFHKYAGDKNYLSKEDLRALMEKEFPGFLENQRDPMALDKIMKDLDQCRDGKVGFQSFFSLVAGLTIACNDYFVVHMKQKGRK

Gene
S100A10
Protein
Protein S100-A10
Organism
Homo sapiens
Length
97 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.203 kDa
Sequence
MPSQMEHAMETMMFTFHKFAGDKGYLTKEDLRVLMEKEFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFFSLIAGLTIACNDYFVVHMKQKGKK

Gene
S100A10
Protein
Protein S100-A10
Organism
Macaca mulatta
Length
97 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.203 kDa
Sequence
MPSQMEHAMETMMFTFHKFAGDKGYLTKEDLRVLMEKEFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFFSLIAGLTIACNDYFVVHMKQKGKK

Gene
S100a10
Protein
Protein S100-A10
Organism
Mus musculus
Length
97 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.186 kDa
Sequence
MPSQMEHAMETMMLTFHRFAGDKDHLTKEDLRVLMEREFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFLSLVAGLTIACNDYFVVNMKQKGKK

Gene
S100a10
Protein
Protein S100-A10
Organism
Oryctolagus cuniculus
Length
97 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.203 kDa
Sequence
MPSQMEHAMETMMFTFHKFAGDKGYLTKEDLRVLMEKEFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFFSLIAGLTIACNDYFVVHMKQKGKK

Gene
S100A10
Protein
Protein S100-A10
Organism
Sus scrofa
Length
96 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.075 kDa
Sequence
MPSQMEHAMETMMFTFHKFAGDKGYLTKEDLRVLMEKEFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFFSLIAGLTIACNDYFVVHMKQKGK

Gene
s100a10
Protein
Protein S100-A10
Organism
Xenopus laevis
Length
96 amino acids
Function
Because p10 induces the dimerization of annexin II (p36), it may function as a regulator of protein phosphorylation in that the p36 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.329 kDa
Sequence
MVAPSELEHSMEKMLLTFHKFAGEKNYMNRDDLQKLLDSEFSEFLKNQNDPMTVDKIMKDLDDCRKGQVNFRSYCSLIAGLLIACNEYYVKHMKKR

Gene
S100a10
Protein
Protein S100-A10
Organism
Rattus norvegicus
Length
95 amino acids
Function
Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.
Similarity
Belongs to the S-100 family.
Mass
11.075 kDa
Sequence
MPSQMEHAMETMMLTFHRFAGEKNYLTKEDLRVLMEREFPGFLENQKDPLAVDKIMKDLDQCRDGKVGFQSFLSLVAGLIIACNDYFVVHMKQKK