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人血小板中低分子量蛋白质的体外合成:无标记释放产物。

In vitro synthesis of low molecular weight proteins in human platelets: absence of labelled release products.

作者信息

Shaw T, Chesterman C N, Morgan F J

出版信息

Thromb Res. 1984 Dec 15;36(6):619-31. doi: 10.1016/0049-3848(84)90201-9.

Abstract

Isolated human blood platelets incubated at 37 degrees C in vitro incorporated labelled amino acids into compounds which included some low molecular weight (less than 80KDa) proteins, as determined by autoradiography after sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) under reducing conditions. Non-dialysable plasma factor(s) inhibited both uptake and incorporation, which although unaffected by Actinomycin D, was inhibited partly by Chloramphenicol and almost completely by Puromycin and Cycloheximide, results which confirm that synthesis is directed by pre-existing mRNAs, some of which is mitochondrial. Assuming that the mRNA coding for proteins which are truly "platelet specific" must be present in megakaryocyte cytoplasm, we investigated the possibility that such RNA may be sufficiently stable for its translation to continue in platelets. Although leakage from platelet alpha-granules and cytoplasm during incubation was negligible and platelets retained their secretory potential we were unable to detect radiolabelled proteins in thrombin-released material after incubation. We conclude that either alpha-granule proteins are not synthesised in platelets or their megakaryocyte progenitors, or that their mRNAs become degraded by the time platelets reach the peripheral circulation. Alternatively, the mechanism which concentrates these proteins in granules does not function in circulating platelets.

摘要

将分离出的人血血小板在37℃体外孵育,血小板会将标记的氨基酸掺入化合物中,这些化合物包括一些低分子量(小于80KDa)的蛋白质,这是通过在还原条件下进行十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)后进行放射自显影测定的。不可透析的血浆因子抑制摄取和掺入,摄取和掺入虽不受放线菌素D影响,但部分受氯霉素抑制,几乎完全受嘌呤霉素和环己酰亚胺抑制,这些结果证实合成是由预先存在的mRNA指导的,其中一些是线粒体mRNA。假设编码真正“血小板特异性”蛋白质的mRNA一定存在于巨核细胞胞质中,我们研究了这种RNA可能足够稳定以便在血小板中继续翻译的可能性。尽管孵育期间血小板α-颗粒和细胞质的渗漏可忽略不计,并且血小板保留了它们的分泌潜能,但孵育后我们无法在凝血酶释放的物质中检测到放射性标记的蛋白质。我们得出结论,要么α-颗粒蛋白不是在血小板或其巨核细胞祖细胞中合成的,要么它们的mRNA在血小板到达外周循环时已被降解。或者,将这些蛋白质浓缩在颗粒中的机制在循环血小板中不起作用。

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