Gleave Emma S, Schmidt Helgo, Carter Andrew P
MRC Laboratory of Molecular Biology, Francis Crick Ave, Cambridge CB2 0QH, UK.
MRC Laboratory of Molecular Biology, Francis Crick Ave, Cambridge CB2 0QH, UK.
J Struct Biol. 2014 Jun;186(3):367-75. doi: 10.1016/j.jsb.2014.03.019. Epub 2014 Mar 28.
Dyneins are large protein complexes that act as microtubule based molecular motors. The dynein heavy chain contains a motor domain which is a member of the AAA+ protein family (ATPases Associated with diverse cellular Activities). Proteins of the AAA+ family show a diverse range of functionalities, but share a related core AAA+ domain, which often assembles into hexameric rings. Dynein is unusual because it has all six AAA+ domains linked together, in one long polypeptide. The dynein motor domain generates movement by coupling ATP driven conformational changes in the AAA+ ring to the swing of a motile element called the linker. Dynein binds to its microtubule track via a long antiparallel coiled-coil stalk that emanates from the AAA+ ring. Recently the first high resolution structures of the dynein motor domain were published. Here we provide a detailed structural analysis of the six AAA+ domains using our Saccharomycescerevisiae crystal structure. We describe how structural similarities in the dynein AAA+ domains suggest they share a common evolutionary origin. We analyse how the different AAA+ domains have diverged from each other. We discuss how this is related to the function of dynein as a motor protein and how the AAA+ domains of dynein compare to those of other AAA+ proteins.
动力蛋白是一种大型蛋白质复合体,作为基于微管的分子马达发挥作用。动力蛋白重链包含一个马达结构域,它是AAA+蛋白家族(与多种细胞活动相关的ATP酶)的成员。AAA+家族的蛋白质具有多种功能,但共享一个相关的核心AAA+结构域,该结构域通常组装成六聚体环。动力蛋白不同寻常之处在于它的所有六个AAA+结构域都在一条长多肽链中连接在一起。动力蛋白马达结构域通过将AAA+环中由ATP驱动的构象变化与一个称为连接臂的活动元件的摆动相耦合来产生运动。动力蛋白通过从AAA+环发出的一条长的反平行卷曲螺旋柄与微管轨道结合。最近,动力蛋白马达结构域的首个高分辨率结构被公布。在这里,我们利用我们的酿酒酵母晶体结构对六个AAA+结构域进行了详细的结构分析。我们描述了动力蛋白AAA+结构域中的结构相似性如何表明它们具有共同的进化起源。我们分析了不同的AAA+结构域是如何彼此分化的。我们讨论了这与动力蛋白作为马达蛋白的功能有何关系,以及动力蛋白的AAA+结构域与其他AAA+蛋白的结构域相比情况如何。