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海鞘卵中的肌肉决定因子会因紫外线照射而失活,通过注射母体信使核糖核酸可部分挽救这种失活。

Muscle determinants in the ascidian egg are inactivated by UV irradiation and the inactivation is partially rescued by injection of maternal mRNAs.

作者信息

Marikawa Y, Yoshida S, Satoh N

机构信息

Department of Zoology, Faculty of Science, Kyoto University, 606-01, Kyoto, Japan.

出版信息

Rouxs Arch Dev Biol. 1995 Jan;204(3):180-186. doi: 10.1007/BF00241270.

Abstract

The ascidian egg contains cytoplasmic determinants that specify the fate of larval muscle cells. In a previous study, we developed an experimental system to identify the molecular nature of muscle determinants, in which unfertilized Ciona savignyi eggs were fragmented into four pieces by centrifugation. When inseminated, only nucleated fragments (red fragments) develop into partial embryos that only show differentiation of epidermal cells. One type of enucleated fragment (black fragment) has the remarkable ability to promote muscle differentiation when fused with red fragments. In the present study, using this experimental system, we investigated the molecular nature of muscle determinants. UV irradiation of black fragments suppressed the ability to promote expression of the muscle-specific protein, myosin heavy chain. The wavelength of UV light responsible for the inactivation (250-275 nm) suggested that UV-sensitive targets are nucleic acids. Injection of poly(A) RNA isolated from an un-irradiated black-fragment-rich fraction into UV-irradiated black fragments partially recovered the ability to promote the expression of myosin heavy chain protein. Poly(A) RNA from a red-fragment-rich fraction did not rescue the suppression of UV-irradiated black fragments. These results suggest that maternal mRNAs enriched in black fragments are closely associated with muscle determinants in the ascidian egg.

摘要

海鞘卵含有决定幼虫肌肉细胞命运的细胞质决定因子。在之前的一项研究中,我们开发了一个实验系统来鉴定肌肉决定因子的分子本质,该系统通过离心将未受精的萨氏海鞘卵分成四部分。受精后,只有有核片段(红色片段)发育成仅表现出表皮细胞分化的部分胚胎。一种去核片段(黑色片段)在与红色片段融合时具有促进肌肉分化的显著能力。在本研究中,利用这个实验系统,我们研究了肌肉决定因子的分子本质。对黑色片段进行紫外线照射会抑制其促进肌肉特异性蛋白肌球蛋白重链表达的能力。导致失活的紫外线波长(250 - 275纳米)表明紫外线敏感靶点是核酸。将从未经紫外线照射的富含黑色片段的组分中分离出的聚腺苷酸RNA注射到经紫外线照射的黑色片段中,部分恢复了其促进肌球蛋白重链蛋白表达的能力。来自富含红色片段的组分的聚腺苷酸RNA不能挽救经紫外线照射的黑色片段的抑制作用。这些结果表明,富含在黑色片段中的母体mRNA与海鞘卵中的肌肉决定因子密切相关。

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