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芽殖酵母中V类肌球蛋白Myo4p与定位信使核糖核酸的关联取决于She蛋白。

Association of the class V myosin Myo4p with a localised messenger RNA in budding yeast depends on She proteins.

作者信息

Münchow S, Sauter C, Jansen R P

机构信息

ZMBH, University of Heidelberg, Im Neuenheimer Feld 282, D-69120 Heidelberg, Germany.

出版信息

J Cell Sci. 1999 May;112 ( Pt 10):1511-8. doi: 10.1242/jcs.112.10.1511.

Abstract

Asymmetric distribution of messenger RNAs is a widespread mechanism to localize synthesis of specific protein to distinct sites in the cell. Although not proven yet there is considerable evidence that mRNA localisation is an active process that depends on the activity of cytoskeletal motor proteins. To date, the only motor protein with a specific role in mRNA localisation is the budding yeast type V myosin Myo4p. Myo4p is required for the localisation of ASH1 mRNA, encoding a transcriptional repressor that is essential for differential expression of the HO gene and mating type switching in budding yeast. Mutations in Myo4p, in proteins of the actin cytoskeleton, and in four other specific genes, SHE2-SHE5 disrupt the daughter-specific localisation of ASH1 mRNA. In order to understand if Myo4p is directly participating in mRNA transport, we used in situ colocalisation and coprecipitation of Myo4p and ASH1 mRNA to test for their interaction. Our results indicate an association of Myo4p and ASH1 mRNA that depends on the activity of two other genes involved in ASH1 mRNA localisation, SHE2 and SHE3. This strongly suggests a direct role of Myo4p myosin as a transporter of localised mRNAs, convincingly supporting the concept of motor-protein based mRNA localisation.

摘要

信使核糖核酸(mRNA)的不对称分布是一种广泛存在的机制,可将特定蛋白质的合成定位到细胞内的不同位点。尽管尚未得到证实,但有大量证据表明,mRNA定位是一个活跃的过程,依赖于细胞骨架运动蛋白的活性。迄今为止,在mRNA定位中具有特定作用的唯一运动蛋白是出芽酵母V型肌球蛋白Myo4p。Myo4p是ASH1 mRNA定位所必需的,ASH1 mRNA编码一种转录抑制因子,对于出芽酵母中HO基因的差异表达和交配型转换至关重要。Myo4p、肌动蛋白细胞骨架蛋白以及其他四个特定基因SHE2 - SHE5中的突变会破坏ASH1 mRNA在子代中的特异性定位。为了了解Myo4p是否直接参与mRNA运输,我们使用Myo4p和ASH1 mRNA的原位共定位和共沉淀来测试它们之间的相互作用。我们的结果表明,Myo4p与ASH1 mRNA之间存在关联,这种关联依赖于参与ASH1 mRNA定位的另外两个基因SHE2和SHE3的活性。这有力地表明了Myo4p肌球蛋白作为定位mRNA转运蛋白的直接作用,令人信服地支持了基于运动蛋白的mRNA定位概念。

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