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纤维蛋白原γ链截短分析表明,C末端,尤其是γIle387,对于这种多链蛋白的组装和分泌至关重要。

Analysis of fibrinogen gamma-chain truncations shows the C-terminus, particularly gammaIle387, is essential for assembly and secretion of this multichain protein.

作者信息

Okumura Nobuo, Terasawa Fumiko, Tanaka Hitoshi, Hirota Masako, Ota Hiroyoshi, Kitano Kiyoshi, Kiyosawa Kendo, Lord Susan T

机构信息

Laboratory of Clinical Chemistry, Department of Medical Technology, School of Allied Medical Sciences, Shinshu University, the Second Department of Internal Medicine, Shinshu University School of Medicine, Shinshu University Hospital, Matsumoto, Japan.

出版信息

Blood. 2002 May 15;99(10):3654-60. doi: 10.1182/blood.v99.10.3654.

Abstract

To examine the role of the fibrinogen gamma chain in the assembly and secretion of this multichain protein, we synthesized a series of fibrinogen variants with truncated gamma chains, terminating between residues gamma379 and the C-terminus, gamma411. The variant fibrinogens were synthesized from altered gamma-chain complementary DNAs in cultured Chinese hamster ovary cells. Immunoassays of the culture media demonstrated that only those variants with gamma chain longer than 386 residues were secreted and that the concentration of fibrinogen decreased with the length of the gamma chain, from 1.4 microg/mL for normal fibrinogen to 0.39 microg/mL for gamma 387 fibrinogen. Immunoassays of cell lysates showed that all variant gamma chains were synthesized, although the levels varied significantly. For variants longer than 386 residues, levels decreased with length but remained near normal. In contrast, expression of the 4 variants with 386 residues or less was about 20-fold reduced. Quantitative reverse transcription-polymerase chain reaction demonstrated that the gamma-chain messenger RNA level was independent from chain length. Western blot analyses showed that lysates expressing variants with 387 residues or more contained species comparable to the known intermediates in fibrinogen assembly, including half-molecules. For shorter variants, these intermediates were not evident. We conclude that residues near the C-terminus of the gamma chain are essential for fibrinogen assembly, and more specifically, that gamma387 is critical. We propose that the loss of residue gamma387 destabilized the structure of gamma chain, preventing assembly of alphagamma and betagamma dimers, essential intermediates in the assembly of normal fibrinogen.

摘要

为了研究纤维蛋白原γ链在这种多链蛋白的组装和分泌中的作用,我们合成了一系列γ链截短的纤维蛋白原变体,其截短位置在γ379残基和C末端γ411之间。这些变体纤维蛋白原是由培养的中国仓鼠卵巢细胞中经过改变的γ链互补DNA合成的。对培养基的免疫分析表明,只有那些γ链长度超过386个残基的变体才会分泌,并且纤维蛋白原的浓度随着γ链长度的增加而降低,从正常纤维蛋白原的1.4μg/mL降至γ387纤维蛋白原的0.39μg/mL。对细胞裂解物的免疫分析表明,所有变体γ链均能合成,尽管其水平差异显著。对于长度超过386个残基的变体,其水平随长度增加而降低,但仍接近正常水平。相比之下,4种长度为386个残基或更少的变体的表达量降低了约20倍。定量逆转录-聚合酶链反应表明,γ链信使RNA水平与链长无关。蛋白质印迹分析表明,表达387个残基或更多残基变体的裂解物中含有与纤维蛋白原组装过程中已知中间体相当的物质,包括半分子。对于较短的变体,这些中间体并不明显。我们得出结论,γ链C末端附近的残基对于纤维蛋白原的组装至关重要,更具体地说,γ387是关键的。我们提出,γ387残基的缺失使γ链结构不稳定,阻止了αγ和βγ二聚体的组装,而αγ和βγ二聚体是正常纤维蛋白原组装过程中的重要中间体。

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