Pashkova Natasha, Catlett Natalie L, Novak Jennifer L, Wu Guanming, Lu Renne, Cohen Robert E, Weisman Lois S
Department of Biochemistry, University of Iowa, Iowa City, IA 52242, USA.
J Cell Biol. 2005 Jan 31;168(3):359-64. doi: 10.1083/jcb.200407146.
The myosin V carboxyl-terminal globular tail domain is essential for the attachment of myosin V to all known cargoes. Previously, the globular tail was viewed as a single, functional entity. Here, we show that the globular tail of the yeast myosin Va homologue, Myo2p, contains two structural subdomains that have distinct functions, namely, vacuole-specific and secretory vesicle-specific movement. Biochemical and genetic analyses demonstrate that subdomain I tightly associates with subdomain II, and that the interaction does not require additional proteins. Importantly, although neither subdomain alone is functional, simultaneous expression of the separate subdomains produces a functional complex in vivo. Our results suggest a model whereby intramolecular interactions between the globular tail subdomains help to coordinate the transport of multiple distinct cargoes by myosin V.
肌球蛋白V的羧基末端球状尾部结构域对于肌球蛋白V与所有已知货物的附着至关重要。以前,球状尾部被视为一个单一的功能实体。在这里,我们表明酵母肌球蛋白Va同源物Myo2p的球状尾部包含两个具有不同功能的结构亚结构域,即液泡特异性和分泌囊泡特异性运动。生化和遗传分析表明,亚结构域I与亚结构域II紧密结合,并且这种相互作用不需要其他蛋白质。重要的是,虽然单独的亚结构域都没有功能,但单独亚结构域的同时表达在体内产生功能性复合物。我们的结果提出了一个模型,即球状尾部亚结构域之间的分子内相互作用有助于协调肌球蛋白V对多种不同货物的运输。