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非四聚体形式是非洲爪蟾卵母细胞和兔网织红细胞裂解物中角蛋白的主要可溶性形式。

A nontetrameric species is the major soluble form of keratin in Xenopus oocytes and rabbit reticulocyte lysates.

作者信息

Bachant J B, Klymkowsky M W

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder 80309-0347, USA.

出版信息

J Cell Biol. 1996 Jan;132(1-2):153-65. doi: 10.1083/jcb.132.1.153.

Abstract

Inside the interphase cell, approximately 5% of the total intermediate filament protein exists in a soluble form. Past studies using velocity gradient sedimentation (VGS) indicate that soluble intermediate filament protein exists as an approximately 7 S tetrameric species. While studying intermediate filament assembly dynamics in the Xenopus oocyte, we used both VGS and size-exclusion chromatography (SEC) to analyze the soluble form of keratin. Previous studies (Coulombe, P. A., and E. Fuchs. 1990. J. Cell Biol. 111:153) report that tetrameric keratins migrate on SEC with an apparent molecular weight of approximately 150,000; the major soluble form of keratin in the oocyte, in contrast, migrates with an apparent molecular weight of approximately 750,000. During oocyte maturation, the keratin system disassembles into a soluble form (Klymkowsky, M. W., L. A. Maynell, and C. Nislow. 1991. J. Cell Biol. 114:787) and the amount of the 750-kD keratin complex increases dramatically. Immunoprecipitation analysis of soluble keratin from matured oocytes revealed the presence of type I and type II keratins, but no other stoichiometrically associated polypeptides, suggesting that the 750-kD keratin complex is composed solely of keratin. To further study the formation of the 750-kD keratin complex, we used rabbit reticulocyte lysates (RRL). The 750-kD keratin complex was formed in RRLs contranslating type I and type II Xenopus keratins, but not when lysates translated type I or type II keratin RNAs alone. The 750-kD keratin complex could be formed posttranslationally in an ATP-independent manner when type I and type II keratin translation reactions were mixed. Under conditions of prolonged incubation, such as occur during VGS analysis, the 750-kD keratin complex disassembled into a 7 S (by VGS), 150-kD (by SEC) form. In urea denaturation studies, the 7 S/150-kD form could be further disassembled into an 80-kD species that consists of cofractionating dimeric and monomeric keratin. Based on these results, the 750-kD species appears to be a supratetrameric complex of keratins and is the major, soluble form of keratin in both prophase and M-phase oocytes, and RRL reactions.

摘要

在间期细胞内,约5%的中间丝蛋白以可溶形式存在。过去使用速度梯度沉降法(VGS)的研究表明,可溶的中间丝蛋白以大约7S的四聚体形式存在。在研究非洲爪蟾卵母细胞中的中间丝组装动力学时,我们同时使用VGS和尺寸排阻色谱法(SEC)来分析角蛋白的可溶形式。先前的研究(库隆布,P.A.,和E.富克斯。1990.《细胞生物学杂志》111:153)报道,四聚体角蛋白在SEC上迁移时的表观分子量约为150,000;相比之下,卵母细胞中角蛋白的主要可溶形式迁移时的表观分子量约为750,000。在卵母细胞成熟过程中,角蛋白系统分解为可溶形式(克利姆科夫斯基,M.W.,L.A.梅内尔,和C.尼斯洛。1991.《细胞生物学杂志》114:787),并且750-kD角蛋白复合物的量急剧增加。对成熟卵母细胞中可溶角蛋白的免疫沉淀分析显示存在I型和II型角蛋白,但没有其他化学计量相关的多肽,这表明750-kD角蛋白复合物仅由角蛋白组成。为了进一步研究750-kD角蛋白复合物的形成,我们使用了兔网织红细胞裂解物(RRL)。在共翻译I型和II型非洲爪蟾角蛋白的RRL中形成了750-kD角蛋白复合物,但当裂解物单独翻译I型或II型角蛋白RNA时则没有形成。当I型和II型角蛋白翻译反应混合时,750-kD角蛋白复合物可以在翻译后以不依赖ATP的方式形成。在延长孵育的条件下,例如在VGS分析过程中发生的情况,750-kD角蛋白复合物分解为7S(通过VGS)、150-kD(通过SEC)形式。在尿素变性研究中,7S/150-kD形式可以进一步分解为一种80-kD的物种,该物种由共分级的二聚体和单体角蛋白组成。基于这些结果,750-kD物种似乎是角蛋白的超四聚体复合物,并且是前期和M期卵母细胞以及RRL反应中角蛋白的主要可溶形式。

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