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IGFBP1

Gene
IGFBP1
Protein
Insulin-like growth factor-binding protein 1
Organism
Ictidomys tridecemlineatus
Length
272 amino acids
Function
IGF-binding proteins prolong the half-life of the IGFs and have been shown to either inhibit or stimulate the growth promoting effects of the IGFs on cell culture. They alter the interaction of IGFs with their cell surface receptors. Promotes cell migration (By similarity).
Mass
29.814 kDa
Sequence
MPEVPAAGLWPFLLLLAVQVSTVASSTQPWHCAPCSAEKLALCPPVPSSCPELSRPAGCGCCPMCALPLGAACGVATARYARGLSCRALPGEPRPLHALTRGQGACVPEPATPTASGLSSIEKEEAKASMVPERVPPESAEMTEEQLLESFHLMASSSEDQPILWNAISTYKSMRAREMADIKKWKQPCRRELYKVLERLAKAQQKAGEEIYKFYLPNCNKNGFYHSKQCETSLDGEAELCWCVYPWSGRRIPGSLEIRGDPNCHQYFNVQN

Gene
Igfbp1
Protein
Insulin-like growth factor-binding protein 1
Organism
Mus musculus
Length
272 amino acids
Function
IGF-binding proteins prolong the half-life of the IGFs and have been shown to either inhibit or stimulate the growth promoting effects of the IGFs on cell culture. They alter the interaction of IGFs with their cell surface receptors. Promotes cell migration (By similarity).
Mass
29.57 kDa
Sequence
MPEFLTVVSWPFLILLSFQIGVAAGAPQPWHCAPCTAERLGLCPPVPASCPEISRPAGCGCCPTCALPMGAACGVATARCAQGLSCRALPGEPRPLHALTRGQGACVPEPAAPATSTLFSSQHEEAKAAVVSADELSESPEMTEEQLLDSFHLMAPSREDQPILWNAISTYSSMRAREIADLKKWKEPCQRELYKVLERLAAAQQKAGDEIYKFYLPNCNKNGFYHSKQCETSLDGEAGLCWCVYPWSGKKIPGSLETRGDPNCHQYFNVHN

Gene
Igfbp1
Protein
Insulin-like growth factor-binding protein 1
Organism
Rattus norvegicus
Length
272 amino acids
Function
IGF-binding proteins prolong the half-life of the IGFs and have been shown to either inhibit or stimulate the growth promoting effects of the IGFs on cell culture. They alter the interaction of IGFs with their cell surface receptors. Promotes cell migration (By similarity).
Mass
29.684 kDa
Sequence
MPEFLTVVSWPFLILLSFQVRVVAGAPQPWHCAPCTAERLELCPPVPASCPEISRPAGCGCCPTCALPLGAACGVATARCAQGLSCRALPGEPRPLHALTRGQGACVLEPAAPATSSLSGSQHEEAKAAVASEDELAESPEMTEEQLLDSFHLMAPSREDQPILWNAISTYSSMRAREITDLKKWKEPCQRELYKVLERLAAAQQKAGDEIYKFYLPNCNKNGFYHSKQCETSLDGEAGLCWCVYPWSGKKIPGSLETRGDPNCHQYFNVQN

Gene
IGFBP1
Protein
Insulin-like growth factor-binding protein 1
Organism
Bos taurus
Length
263 amino acids
Function
IGF-binding proteins prolong the half-life of the IGFs and have been shown to either inhibit or stimulate the growth promoting effects of the IGFs on cell culture. They alter the interaction of IGFs with their cell surface receptors. Promotes cell migration (By similarity).
Mass
28.794 kDa
Sequence
MPEVLAVRAWPLLLSLAVQLGATVGAPQPWRCAPCSAERMALCPPVPASCPELTRSAGCGCCPMCALPLGAACGVATARCARGLSCRALPGEPRPLHALTRGQGACMTTPSDEATDTKDTTSPENVSPESSEITQEQLLDNFHLMAESSEDLPILWNAISNYESLRALEISDVKKWKEPCQRELYKVLDRLAREQQKAGDKLYKFYLPNCNKNGFYHSKQCETSLEGEPGLCWCVYPWSGKRILGSVAVRGDPKCQQYFNLQN

Gene
IGFBP1
Protein
Insulin-like growth factor-binding protein 1
Organism
Sus scrofa
Length
262 amino acids
Function
IGF-binding proteins prolong the half-life of the IGFs and have been shown to either inhibit or stimulate the growth promoting effects of the IGFs on cell culture. They alter the interaction of IGFs with their cell surface receptors. Promotes cell migration (By similarity).
Mass
28.331 kDa
Sequence
MPEVPAVRAWPLLLSLALQLGAAAGAPQPLHCAPCSAERLALCPPVPASCPEATRPAGCGCCPTCALPLGACGVATARCARGLSCRALPGEPRPLHALTRGQGACMPAPSAEATETKDPAAPETTSPESTEMTQEQLLDSFHLMATSSEDLPILWNAINNYESMKALEATDIKKWKEPCQRELYKVLDRLAREQQKAGDRLYKFYLPNCNKNGFYHSKQCETSLEGEPGLCWCVYPWSGKKILGSTAVRGDPKCHQYFNSQN

Gene
IGFBP1
Protein
Insulin-like growth factor-binding protein 1
Organism
Homo sapiens
Length
259 amino acids
Function
IGF-binding proteins prolong the half-life of the IGFs and have been shown to either inhibit or stimulate the growth promoting effects of the IGFs on cell culture. They alter the interaction of IGFs with their cell surface receptors. Promotes cell migration.
Mass
27.904 kDa
Sequence
MSEVPVARVWLVLLLLTVQVGVTAGAPWQCAPCSAEKLALCPPVSASCSEVTRSAGCGCCPMCALPLGAACGVATARCARGLSCRALPGEQQPLHALTRGQGACVQESDASAPHAAEAGSPESPESTEITEEELLDNFHLMAPSEEDHSILWDAISTYDGSKALHVTNIKKWKEPCRIELYRVVESLAKAQETSGEEISKFYLPNCNKNGFYHSRQCETSMDGEAGLCWCVYPWNGKRIPGSPEIRGDPNCQIYFNVQN