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芽殖酵母V类肌球蛋白用于ASH1 mRNA转运的基本特征。

Essential features of the class V myosin from budding yeast for ASH1 mRNA transport.

作者信息

Bookwalter Carol S, Lord Matthew, Trybus Kathleen M

机构信息

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT 05405, USA.

出版信息

Mol Biol Cell. 2009 Jul;20(14):3414-21. doi: 10.1091/mbc.e08-08-0801. Epub 2009 May 28.

Abstract

Myo4p, a single-headed and nonprocessive class V myosin in budding yeast, transports >20 different mRNAs asymmetrically to the bud. Here, we determine the features of the Myo4p motor that are necessary for correct localization of ASH1 mRNA to the daughter cell, a process that also requires the adapter protein She3p and the dimeric mRNA-binding protein She2p. The rod region of Myo4p, but not the globular tail, is essential for correct localization of ASH1 mRNA, confirming that the rod contains the primary binding site for She3p. The requirement for both the rod region and She3p can be bypassed by directly coupling the mRNA-binding protein She2p to Myo4p. ASH1 mRNA was also correctly localized when one motor was bound per dimeric She2p, or when two motors were joined together by a leucine zipper. Because multiple mRNAs are cotransported to the bud, it is likely that this process involves multiple motor transport regardless of the number of motors per zip code. Our results show that the most important feature for correct localization is the retention of coupling between all the members of the complex (Myo4p-She3p-She2p-ASH1 mRNA), which is aided by She3p being a tightly bound subunit of Myo4p.

摘要

肌球蛋白4(Myo4p)是一种存在于芽殖酵母中的单头且非连续性的V类肌球蛋白,它能将20多种不同的信使核糖核酸(mRNA)不对称地转运至芽体。在此,我们确定了Myo4p马达蛋白的一些特征,这些特征对于ASH1信使核糖核酸正确定位于子细胞是必需的,这一过程还需要衔接蛋白She3p和二聚体信使核糖核酸结合蛋白She2p。Myo4p的杆状区域而非球状尾部对于ASH1信使核糖核酸的正确定位至关重要,这证实杆状区域包含She3p的主要结合位点。通过将信使核糖核酸结合蛋白She2p直接与Myo4p偶联,可以绕过对杆状区域和She3p的需求。当每个二聚体She2p结合一个马达蛋白时,或者当两个马达蛋白通过亮氨酸拉链连接在一起时,ASH1信使核糖核酸也能正确定位。由于多个信使核糖核酸会共转运至芽体,所以无论每个邮政编码区域的马达蛋白数量如何,这个过程可能都涉及多个马达蛋白运输。我们的结果表明,正确定位的最重要特征是复合物(Myo4p-She3p-She2p-ASH1信使核糖核酸)所有成员之间保持偶联,而She3p作为Myo4p紧密结合的亚基有助于这种偶联。

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