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原肌球蛋白对肌球蛋白与肌动蛋白结合的正反两方面影响的推拉作用。一种嵌合原肌球蛋白主体 - 客体研究。

Push and pull of tropomyosin's opposite effects on myosin attachment to actin. A chimeric tropomyosin host-guest study.

机构信息

Department of Medicine, University of Illinois at Chicago,Chicago, Illinois 60612, United States.

出版信息

Biochemistry. 2010 Dec 28;49(51):10873-80. doi: 10.1021/bi101632f. Epub 2010 Dec 2.

Abstract

Tropomyosin is a ubiquitous actin-binding protein with an extended coiled-coil structure. Tropomyosin-actin interactions are weak and loosely specific, but they potently influence myosin. One such influence is inhibitory and is due to tropomyosin's statistically preferred positions on actin that sterically interfere with actin's strong attachment site for myosin. Contrastingly, tropomyosin's other influence is activating. It increases myosin's overall actin affinity ∼4-fold. Stoichiometric considerations cause this activating effect to equate to an ∼4(7)-fold effect of myosin on the actin affinity of tropomyosin. These positive, mutual, myosin-tropomyosin effects are absent if Saccharomyces cerevisiae tropomyosin replaces mammalian tropomyosin. To investigate these phenomena, chimeric tropomyosins were generated in which 38-residue muscle tropomyosin segments replaced a natural duplication within S. cerevisiae tropomyosin TPM1. Two such chimeric tropomyosins were sufficiently folded coiled coils to allow functional study. The two chimeras differed from TPM1 but in opposite ways. Consistent with steric interference, myosin greatly decreased the actin affinity of chimera 7, which contained muscle tropomyosin residues 228-265. On the other hand, myosin S1 increased by an order of magnitude the actin affinity of chimera 3, which contained muscle tropomyosin residues 74-111. Similarly, myosin S1-ADP binding to actin was strengthened 2-fold by substitution of chimera 3 tropomyosin for wild-type TPM1. Thus, a yeast tropomyosin was induced to mimic the activating behavior of mammalian tropomyosin by inserting a mammalian tropomyosin sequence. The data were not consistent with direct tropomyosin-myosin binding. Rather, they suggest an allosteric mechanism, in which myosin and tropomyosin share an effect on the actin filament.

摘要

原肌球蛋白是一种普遍存在的肌动蛋白结合蛋白,具有延伸的卷曲螺旋结构。原肌球蛋白与肌动蛋白的相互作用较弱且特异性不高,但它们强烈影响肌球蛋白。其中一种影响是抑制性的,这是由于原肌球蛋白在肌动蛋白上的统计优选位置阻碍了肌球蛋白与肌动蛋白的强结合位点的结合。相比之下,原肌球蛋白的另一种影响是激活性的。它将肌球蛋白对肌动蛋白的整体亲和力提高了约 4 倍。由于计量考虑,这种激活作用相当于肌球蛋白对原肌球蛋白肌动蛋白亲和力的约 4(7)倍的影响。如果用酿酒酵母原肌球蛋白代替哺乳动物原肌球蛋白,这些正向的、相互的、肌球蛋白-原肌球蛋白的影响就会缺失。为了研究这些现象,生成了嵌合原肌球蛋白,其中肌球蛋白 38 个残基的原肌球蛋白片段取代了酿酒酵母原肌球蛋白 TPM1 内的一个天然重复。两个这样的嵌合原肌球蛋白是足够折叠的卷曲螺旋,允许进行功能研究。这两个嵌合体与 TPM1 不同,但方式相反。与空间干扰一致,肌球蛋白大大降低了包含肌肉原肌球蛋白残基 228-265 的嵌合体 7 的肌动蛋白亲和力。另一方面,肌球蛋白 S1 将包含肌肉原肌球蛋白残基 74-111 的嵌合体 3 的肌动蛋白亲和力提高了一个数量级。同样,用嵌合体 3 原肌球蛋白代替野生型 TPM1 后,肌球蛋白 S1-ADP 与肌动蛋白的结合增强了 2 倍。因此,通过插入哺乳动物原肌球蛋白序列,诱导酿酒酵母原肌球蛋白模拟哺乳动物原肌球蛋白的激活行为。数据与直接原肌球蛋白-肌球蛋白结合不一致。相反,它们表明存在一种变构机制,其中肌球蛋白和原肌球蛋白共享对肌动蛋白丝的影响。

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