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在减数分裂成熟过程中,非洲爪蟾卵母细胞前期存在的一种主要的碱性α-微管蛋白亚型减少。

A predominant basic alpha-tubulin isoform present in prophase Xenopus oocyte decreases during meiotic maturation.

作者信息

Thibier C, Denoulet P, Jessus C, Ozon R

机构信息

Laboratoire de Physiologie de la Reproduction, URA CNRS/INRA 1449, Université P et M Curie, Paris, France.

出版信息

Biol Cell. 1992;75(3):173-80. doi: 10.1016/0248-4900(92)90138-q.

Abstract

Xenopus oocytes are blocked in prophase of the first meiotic division. During the G2/M transition drastic changes occur both in the cytoskeletal organization and in the capacity of tubulin to polymerize. Posttranslational modification of tubulin isoforms might be one of the factors that control the dynamic properties of microtubules. We have therefore analysed, by two-dimensional polyacrylamide gel electrophoresis, the isotubulins purified from Xenopus oocytes, and we show that tubulin is resolved into at least four alpha-isoforms and four beta-isoforms. We have identified a basic alpha (alpha b)-tubulin isoform which is specific to prophase arrested oocyte and that progressively disappears during meiotic maturation; its decrease is initiated when the nuclear envelope breaks down and is controlled by the nucleus. Using 35S methionine labelled oocytes we demonstrate that the disappearance of the alpha b isotubulin results from both an arrest of its biosynthesis after maturation, and from posttranslational modification which induces a shift of this alpha-isoform to a more acidic pI. Moreover, in vitro experiments using 35S prelabelled tubulin purified from prophase oocytes show that metaphase extracts containing MPF activity are able to induce the acidification of the alpha b-isoform, suggesting that the observed posttranslational modification might be regulated by p34cdc2. However, the nature of this modification remains to be elucidated.

摘要

非洲爪蟾卵母细胞停滞于第一次减数分裂的前期。在G2/M转换期间,细胞骨架组织和微管蛋白聚合能力都会发生剧烈变化。微管蛋白亚型的翻译后修饰可能是控制微管动态特性的因素之一。因此,我们通过二维聚丙烯酰胺凝胶电泳分析了从非洲爪蟾卵母细胞中纯化的同型微管蛋白,结果表明微管蛋白可分离为至少四种α-亚型和四种β-亚型。我们鉴定出一种碱性α(αb)-微管蛋白亚型,它是前期停滞卵母细胞所特有的,在减数分裂成熟过程中逐渐消失;其减少始于核膜破裂时,并受细胞核控制。使用35S甲硫氨酸标记的卵母细胞,我们证明αb同型微管蛋白的消失是成熟后其生物合成停滞以及翻译后修饰导致该α-亚型向更酸性的等电点转变共同作用的结果。此外,使用从前期卵母细胞中纯化的35S预标记微管蛋白进行的体外实验表明,含有MPF活性的中期提取物能够诱导αb-亚型的酸化,这表明观察到的翻译后修饰可能受p34cdc2调控。然而,这种修饰的本质仍有待阐明。

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