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前胃泌素在AtT-20细胞中激素原转化酶内切蛋白水解作用的特异性。

Specificity of prohormone convertase endoproteolysis of progastrin in AtT-20 cells.

作者信息

Dickinson C J, Sawada M, Guo Y J, Finniss S, Yamada T

机构信息

Department of Pediatrics, University of Michigan Medical Center, Ann Arbor 48109, USA.

出版信息

J Clin Invest. 1995 Sep;96(3):1425-31. doi: 10.1172/JCI118178.

Abstract

Biologically active peptide hormones are synthesized from larger precursor proteins by a variety of posttranslational processing reactions. Endoproteolytic cleavage at the Lys74-Lys75 dibasic processing site of progastrin is the major determinant for the relative distribution of gastrin heptadecapeptide and tetratriacontapeptide in tissues. Thus, we explored the ability of two prohormone convertases, PC1/PC3 and PC2, to cleave this important site within progastrin. We expressed wild-type human gastrin cDNA and mutant cDNAs in which the Lys74Lys75 site was changed to Lys74Arg75, Arg74Arg75, and Arg74Lys75 residues in AtT-20 cells. Because AtT-20 cells express Pc1/PC3 but not PC2, we also coexpressed a cDNA encoding PC2 in both wild-type and mutant gastrin-producing AtT-20 cells. Wild-type Lys74Lys75 and mutant Arg74Arg75 progastrin processing sites were efficiently cleaved in AtT-20 cells only after coexpression of PC2. Mutant Lys74Arg75 progastrin was readily processed in cells in the presence or absence of PC2 coexpression, but, in contrast, mutant Arg74Lys75 progastrin was inefficiently cleaved regardless of PC2 coexpression. Northern analysis revealed the presence of PC2 but not PC1/ PC3 in canine antral gastrin-producing G cells. These data suggest that PC2 but not PC1/PC3 is responsible for the cleavage of the Lys74Lys75 site in wild-type progastrin.

摘要

生物活性肽激素是通过多种翻译后加工反应从较大的前体蛋白合成而来的。胃泌素原在Lys74-Lys75双碱性加工位点的内蛋白水解切割是胃泌素十七肽和三十四肽在组织中相对分布的主要决定因素。因此,我们探讨了两种激素原转化酶PC1/PC3和PC2切割胃泌素原中这一重要位点的能力。我们在AtT-20细胞中表达了野生型人胃泌素cDNA以及突变cDNA,其中Lys74Lys75位点被改变为Lys74Arg75、Arg74Arg75和Arg74Lys75残基。由于AtT-20细胞表达Pc1/PC3但不表达PC2,我们还在野生型和产生突变胃泌素的AtT-20细胞中共同表达了编码PC2的cDNA。只有在共同表达PC2后,野生型Lys74Lys75和突变型Arg74Arg75胃泌素原加工位点才在AtT-20细胞中被有效切割。无论是否共同表达PC2,突变型Lys74Arg75胃泌素原在细胞中都很容易被加工,但相比之下,无论是否共同表达PC2,突变型Arg74Lys75胃泌素原都切割效率低下。Northern分析显示在犬胃窦产生胃泌素的G细胞中存在PC2而不存在PC1/PC3。这些数据表明,负责野生型胃泌素原中Lys74Lys75位点切割的是PC2而不是PC1/PC3。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13ed/185765/f87c9aa89e93/jcinvest00015-0255-a.jpg

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