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肌球蛋白丝中构象和螺旋顺序的温度及配体依赖性

Temperature and ligand dependence of conformation and helical order in myosin filaments.

作者信息

Xu S, Offer G, Gu J, White H D, Yu L C

机构信息

Laboratory of Muscle Biology, National Institute of Arthritis, Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Biochemistry. 2003 Jan 21;42(2):390-401. doi: 10.1021/bi026085t.

Abstract

Mammalian myosin filaments are helically ordered only at higher temperatures (>20 degrees C) and become progressively more disordered as the temperature is decreased. It had previously been suggested that this was a consequence of the dependence of the hydrolytic step of myosin ATPase on temperature and the requirement that hydrolysis products (e.g., ADP.P(i)) be bound at the active site. An alternative hypothesis is that temperature directly affects the conformation of the myosin heads and that they need to be in a particular conformation for helical order in the filament. To discriminate between these two hypotheses, we have studied the effect of temperature on the helical order of myosin heads in rabbit psoas muscle in the presence of nonhydrolyzable ligands. The muscle fibers were overstretched to nonoverlap such that myosin affinity for nucleotides was not influenced by the interaction of myosin with the thin filament. We show that with bound ADP.vanadate, which mimics the transition state between ATP and hydrolysis products, or with the ATP analogues AMP-PNP or ADP.BeF(x)() the myosin filaments are substantially ordered at higher temperatures but are reversibly disordered by cooling. These results reinforce recent studies in solution showing that temperature as well as ligand influence the equilibrium between multiple myosin conformations [Málnási-Csizmadia, A., Pearson, D. S., Kovács, M., Woolley, R. J., Geeves, M. A., and Bagshaw, C. R. (2001) Biochemistry 40, 12727-12737; Málnási-Csizmadia, A., Woolley, R. J., and Bagshaw, C. R. (2000) Biochemistry 39, 16135-16146; Urbanke, C., and Wray, J. (2001) Biochem. J. 358, 165-173] and indicate that helical order requires the myosin heads to be in the closed conformation. Our results suggest that most of the heads in the closed conformation are ordered, and that order is not produced in a separate step. Hence, helical order can be used as a signature of the closed conformation in relaxed muscle. Analysis of the dependence on temperature of helical order and myosin conformation shows that in the presence of these analogues one ordered (closed) conformation and two disordered conformations with distinct thermodynamic properties coexist. Low temperatures favor one disordered conformation, while high temperatures favor the ordered (closed) conformation together with a second disordered conformation.

摘要

哺乳动物的肌球蛋白丝仅在较高温度(>20摄氏度)下呈螺旋状排列,随着温度降低,其排列会逐渐变得更加无序。此前有人提出,这是由于肌球蛋白ATP酶的水解步骤对温度的依赖性以及水解产物(如ADP.P(i))需结合在活性位点的要求所致。另一种假设是,温度直接影响肌球蛋白头部的构象,且它们需要处于特定构象才能在丝中形成螺旋状排列。为了区分这两种假设,我们研究了在存在不可水解配体的情况下温度对兔腰大肌中肌球蛋白头部螺旋状排列的影响。将肌纤维过度拉伸至不重叠,以使肌球蛋白对核苷酸的亲和力不受肌球蛋白与细肌丝相互作用的影响。我们发现,结合ADP.钒酸盐(其模拟ATP与水解产物之间的过渡态)、ATP类似物AMP-PNP或ADP.BeF(x)()时,肌球蛋白丝在较高温度下基本呈有序排列,但冷却后会可逆地变得无序。这些结果强化了最近在溶液中的研究,表明温度以及配体都会影响多种肌球蛋白构象之间的平衡[Málnási-Csizmadia, A., Pearson, D. S., Kovács, M., Woolley, R. J., Geeves, M. A., and Bagshaw, C. R. (2001) Biochemistry 40, 12727 - 12737; Málnási-Csizmadia, A., Woolley, R. J., and Bagshaw, C. R. (2000) Biochemistry 39, 16135 - 16146; Urbanke, C., and Wray, J. (2001) Biochem. J. 358, 165 - 173],并表明螺旋状排列要求肌球蛋白头部处于闭合构象。我们的结果表明,处于闭合构象的大多数头部是有序的,且这种有序并非在一个单独步骤中产生。因此,螺旋状排列可作为松弛肌肉中闭合构象的标志。对螺旋状排列和肌球蛋白构象对温度依赖性的分析表明,在这些类似物存在的情况下,一种有序(闭合)构象和两种具有不同热力学性质的无序构象共存。低温有利于一种无序构象,而高温有利于有序(闭合)构象以及另一种无序构象。

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