首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Three-dimensional structure of a single filament in the Limulus acrosomal bundle: scruin binds to homologous helix-loop-beta motifs in actin
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Three-dimensional structure of a single filament in the Limulus acrosomal bundle: scruin binds to homologous helix-loop-beta motifs in actin

机译:mul顶束中单根丝的三维结构:细丝蛋白与肌动蛋白中的同源螺旋-环-β基序结合

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摘要

Frozen, hydrated acrosomal bundles from Limulus sperm were imaged with a 400 kV electron cryomicroscope. Segments of this long bundle can be studied as a P1 crystal with a unit cell containing an acrosomal filament with 28 actin and 28 scruin molecules in 13 helical turns. A novel computational procedure was developed to extract single columns of superimposed acrosomal filaments from the distinctive crystallographic view. Helical reconstruction was used to generate a three-dimensional structure of this computationally isolated acrosomal filament. The scruin molecule is organized into two domains which contact two actin subunits in different strands of the same actin filament. A correlation of Holmes' actin filament model to the density in our acrosomal filament map shows that actin subdomains 1, 2, and 3 match the model density closely. However, actin subdomain 4 matches rather poorly, suggesting that interactions with scruin may have altered actin conformation. Scruin makes extensive interactions with helix-loop-beta motifs in subdomain 3 of one actin subunit and in subdomain 1 of a consecutive actin subunit along the genetic filament helix. These two actin subdomains are structurally homologous and are closely spaced along the actin filament. Our model suggests that scruin, which is derived from a tandemly duplicated gene, has evolved to bind structurally homologous but non-identical positions across two consecutive actin subunits.
机译:用400 kV电子冷冻显微镜对from鱼精子的冷冻,水合顶体束进行成像。可以将这种长束的片段研究为P1晶体,其晶胞包含顶体细丝,该顶体细丝具有13个螺旋形匝数的28个肌动蛋白和28个检查蛋白分子。从独特的晶体学观点出发,开发了一种新颖的计算程序以提取单列的重叠的顶体细丝。螺旋重建用于生成此计算上分离的顶体细丝的三维结构。 scruin分子被组织为两个域,它们与同一根肌动蛋白丝的不同链中的两个肌动蛋白亚基接触。 Holmes肌动蛋白丝模型与我们的顶体丝图中的密度的相关性表明,肌动蛋白亚域1、2和3与模型密度紧密匹配。但是,肌动蛋白亚结构域4的匹配性很差,表明与scruin的相互作用可能改变了肌动蛋白的构象。 Scruin与一个肌动蛋白亚基的亚结构域3和连续的肌动蛋白亚基的亚结构域1中的螺旋-环-β基序沿着遗传丝螺旋进行广泛的相互作用。这两个肌动蛋白亚结构域在结构上同源,并且沿着肌动蛋白丝紧密间隔。我们的模型表明,scruin源自串联复制的基因,现已进化为在两个连续的肌动蛋白亚基之间结合结构同源但不相同的位置。

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