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骨形态发生蛋白1是层粘连蛋白5γ2链的一种细胞外加工酶。

Bone morphogenetic protein 1 is an extracellular processing enzyme of the laminin 5 gamma 2 chain.

作者信息

Amano S, Scott I C, Takahara K, Koch M, Champliaud M F, Gerecke D R, Keene D R, Hudson D L, Nishiyama T, Lee S, Greenspan D S, Burgeson R E

机构信息

MGH/Harvard Cutaneous Biology Research Center, Massachusetts General Hospital, Charlestown, Massachusetts 02129, USA.

出版信息

J Biol Chem. 2000 Jul 28;275(30):22728-35. doi: 10.1074/jbc.M002345200.

Abstract

Epithelial cells maintained in culture medium containing low calcium proteolytically process laminin 5 (alpha3beta3gamma2) within the alpha3 and gamma2 chains (). Experiments were designed to identify the enzyme(s) responsible for the laminin 5 processing and the sites of proteolytic cleavage. To characterize the nature of laminin 5 processing, we determined the N-terminal amino acid sequences of the proteolytic fragments produced by the processing events. The results indicate that the first alpha3 chain cleavage (200-l65 kDa alpha3) occurs within subdomain G4 of the G domain. The second cleavage (l65-l45 kDa alpha3) occurs within the lIla domain, 11 residues N-terminal to the start of domain II. The gamma chain is cleaved within the second epidermal growth factor-like repeat of domain Ill. The sequence cleaved within the gamma2 chain matches the consensus sequence for the cleavage of type I, II, and III procollagens by bone morphogenetic protein-1 (BMP-1), also known as type I procollagen C-proteinase (). Recombinant BMP-1 cleaves gamma2 in vitro, both within intact laminin 5 and at the predicted site of a recombinant gamma2 short arm. alpha3 is also cleaved by BMP-1 in vitro, but the cleavage site is yet to be determined. These results show the laminin alpha3 and gamma2 chains to be substrates for BMP-1 in vitro. We speculate that gamma2 cleavage is required for formation of the laminin 5-6 complex and that this complex is directly involved in assembly of the interhemidesmosomal basement membrane. This further suggests that BMP-1 activity facilitates basement membrane assembly, but not hemidesmosome assembly, in the laminin 5-rich dermal-epidermal junction basement membrane in vivo.

摘要

在含有低钙的培养基中培养的上皮细胞可对层粘连蛋白5(α3β3γ2)的α3链和γ2链进行蛋白水解加工()。设计实验以鉴定负责层粘连蛋白5加工的酶及其蛋白水解切割位点。为了表征层粘连蛋白5加工的性质,我们确定了加工事件产生的蛋白水解片段的N端氨基酸序列。结果表明,第一次α3链切割(200 kDa至165 kDa的α3)发生在G结构域的G4亚结构域内。第二次切割(165 kDa至145 kDa的α3)发生在IIIa结构域内,位于结构域II起始处N端11个残基处。γ链在结构域III的第二个表皮生长因子样重复序列内被切割。γ2链内被切割的序列与骨形态发生蛋白-1(BMP-1,也称为I型前胶原C蛋白酶)切割I型、II型和III型前胶原的共有序列相匹配()。重组BMP-1在体外可切割完整层粘连蛋白5中的γ2以及重组γ2短臂的预测位点。α3在体外也可被BMP-1切割,但切割位点尚未确定。这些结果表明层粘连蛋白α3链和γ2链在体外是BMP-1的底物。我们推测γ2切割是层粘连蛋白5-6复合物形成所必需的,并且该复合物直接参与半桥粒间基底膜的组装。这进一步表明,在体内富含层粘连蛋白5的真皮-表皮连接基底膜中,BMP-1活性促进基底膜组装,但不促进半桥粒组装。

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