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动力蛋白轻链2(DYNLL2)与肌球蛋白Va的结合需要选择性剪接的外显子B,并稳定肌球蛋白卷曲螺旋结构域的一部分。

The binding of DYNLL2 to myosin Va requires alternatively spliced exon B and stabilizes a portion of the myosin's coiled-coil domain.

作者信息

Wagner Wolfgang, Fodor Elfrieda, Ginsburg Ann, Hammer John A

机构信息

Laboratory of Cell Biology, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Biochemistry. 2006 Sep 26;45(38):11564-77. doi: 10.1021/bi061142u.

Abstract

The myosin Va light chain DYNLL2 has been proposed to function as an adaptor to link the myosin to certain cargo. Here, we mapped the binding site for DYNLL2 within the myosin Va heavy chain. Copurification and pull-down experiments showed that the heavy chain contains a single DYNLL2 binding site and that this site resides within a discontinuity in the myosin's central coiled-coil domain. Importantly, exon B, an alternatively spliced, three-amino acid exon, is a part of this binding site, and we show in the context of full-length myosin Va that this exon is required for DYNLL2-myosin Va interaction. We investigated the effect of DYNLL2 binding on the structure of a myosin Va heavy chain fragment that contains the DYNLL2 binding site and flanking sequence, only parts of which are strongly predicted to form a coiled coil. Circular dichroism measurements revealed a DYNLL2-induced change in the secondary structure of this dimeric myosin fragment that is consistent with an increase in alpha-helical coiled-coil content. Moreover, the binding of DYNLL2 considerably stabilizes this heavy chain fragment against thermal denaturation. Analytical ultracentrifugation yielded an apparent association constant of approximately 3 x 10(6) M(-1) for the interaction of DYNLL2 with the dimeric myosin fragment. Together, these data show that alternative splicing of the myosin Va heavy chain controls DYNLL2-myosin Va interaction and that DYNLL2 binding alters the structure of a portion of the myosin's coiled-coil domain. These results suggest that exon B could have a significant impact on the conformation and regulatory folding of native myosin Va, as well as on its interaction with certain cargos.

摘要

肌球蛋白Va轻链DYNLL2被认为作为衔接蛋白将肌球蛋白与特定货物连接起来。在此,我们绘制了DYNLL2在肌球蛋白Va重链中的结合位点。共纯化和下拉实验表明,重链含有一个单一的DYNLL2结合位点,且该位点位于肌球蛋白中央卷曲螺旋结构域的一个间断处。重要的是,外显子B是一个选择性剪接的三氨基酸外显子,是该结合位点的一部分,并且我们在全长肌球蛋白Va的背景下表明,该外显子是DYNLL2与肌球蛋白Va相互作用所必需的。我们研究了DYNLL2结合对包含DYNLL2结合位点和侧翼序列的肌球蛋白Va重链片段结构的影响,其中只有部分序列被强烈预测会形成卷曲螺旋。圆二色性测量揭示了DYNLL2诱导的该二聚体肌球蛋白片段二级结构变化,这与α-螺旋卷曲螺旋含量的增加一致。此外,DYNLL2的结合显著稳定了该重链片段使其抵抗热变性。分析超速离心得出DYNLL2与二聚体肌球蛋白片段相互作用的表观缔合常数约为 (3×10^6) (M^{-1})。总之,这些数据表明肌球蛋白Va重链的选择性剪接控制DYNLL2与肌球蛋白Va的相互作用,并且DYNLL2结合改变了肌球蛋白卷曲螺旋结构域一部分的结构。这些结果表明外显子B可能对天然肌球蛋白Va的构象和调节性折叠以及其与某些货物的相互作用有重大影响。

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