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重组人纤维蛋白原与γ'链的硫酸化作用

Recombinant human fibrinogen and sulfation of the gamma' chain.

作者信息

Farrell D H, Mulvihill E R, Huang S M, Chung D W, Davie E W

机构信息

Department of Biochemistry, University of Washington, Seattle 98195.

出版信息

Biochemistry. 1991 Oct 1;30(39):9414-20. doi: 10.1021/bi00103a004.

Abstract

Human fibrinogen and the homodimeric gamma'-chain-containing variant have been expressed in BHK cells using cDNAs coding for the alpha, beta, and gamma (or gamma') chains. The fibrinogens were secreted at levels greater than 4 micrograms (mg of total cell protein)-1 day-1 and were biologically active in clotting assays. Recombinant fibrinogen containing the gamma' chain incorporated 35SO4 into its chains during biosynthesis, while no incorporation occurred in the protein containing the gamma chain. The identity of the sulfated gamma' chain was verified by its ability to form dimers during clotting. In addition, carboxypeptidase Y digestion of the recombinant fibrinogen containing the gamma' chain released 96% of the 35S label from the sulfated chain, and the radioactive material was identified as tyrosine O-sulfate. These results clarify previous findings of the sulfation of tyrosine in human fibrinogen.

摘要

利用编码α、β和γ(或γ')链的cDNA,在BHK细胞中表达了人纤维蛋白原和含同型二聚体γ'链的变体。纤维蛋白原的分泌水平高于4微克/(毫克总细胞蛋白·天),并且在凝血试验中具有生物活性。含γ'链的重组纤维蛋白原在生物合成过程中将35SO4掺入其链中,而含γ链的蛋白质中未发生掺入。通过其在凝血过程中形成二聚体的能力验证了硫酸化γ'链的身份。此外,用羧肽酶Y消化含γ'链的重组纤维蛋白原,从硫酸化链中释放出96%的35S标记,放射性物质被鉴定为酪氨酸O-硫酸盐。这些结果阐明了先前关于人纤维蛋白原中酪氨酸硫酸化的发现。

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