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在松弛和激活条件下,快、慢骨骼肌肌球蛋白合成丝中的有序-无序结构转变。

Order-disorder structural transitions in synthetic filaments of fast and slow skeletal muscle myosins under relaxing and activating conditions.

作者信息

Podlubnaya Z A, Malyshev S L, Nieznański K, Stepkowski D

机构信息

Institute of Experimental and Theoretical Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region.

出版信息

Acta Biochim Pol. 2000;47(4):1007-17.

Abstract

In the previous study (Podlubnaya et al., 1999, J. Struc. Biol. 127, 1-15) Ca2+-induced reversible structural transitions in synthetic filaments of pure fast skeletal and cardiac muscle myosins were observed under rigor conditions (-Ca2+/+Ca2+). In the present work these studies have been extended to new more order-producing conditions (presence of ATP in the absence of Ca2+) aimed at arresting the relaxed structure in synthetic filaments of both fast and slow skeletal muscle myosin. Filaments were formed from column-purified myosins (rabbit fast skeletal muscle and rabbit slow skeletal semimebranosusproprius muscle). In the presence of 0.1 mM free Ca2+, 3 mM Mg2+ and 2 mM ATP (activating conditions) these filaments had a spread structure with a random arrangement of myosin heads and subfragments 2 protruding from the filament backbone. Such a structure is indistinguishable from the filament structures observed previously for fast skeletal, cardiac (see reference cited above) and smooth (Podlubnaya et al., 1999, J. Muscle Res. Cell Motil. 20, 547-554) muscle myosins in the presence of 0.1 mM free Ca2+. In the absence of Ca2+ and in the presence of ATP (relaxing conditions) the filaments of both studied myosins revealed a compact ordered structure. The fast skeletal muscle myosin filaments exhibited an axial periodicity of about 14.5 nm and which was much more pronounced than under rigor conditions in the absence of Ca2+ (see the first reference cited). The slow skeletal muscle myosin filaments differ slightly in their appearance from those of fast muscle as they exhibit mainly an axial repeat of about 43 nm while the 14.5 nm repeat is visible only in some regions. This may be a result of a slightly different structural properties of slow skeletal muscle myosin. We conclude that, like other filaments of vertebrate myosins, slow skeletal muscle myosin filaments also undergo the Ca2+-induced structural order-disorder transitions. It is very likely that all vertebrate muscle myosins possess such a property.

摘要

在先前的研究中(Podlubnaya等人,1999年,《结构生物学杂志》127卷,第1 - 15页),在严格条件下(-Ca2+/+Ca2+)观察到了Ca2+诱导的纯快速骨骼肌和心肌肌球蛋白合成丝中的可逆结构转变。在本研究中,这些研究已扩展到新的更能产生有序结构的条件(在无Ca2+的情况下存在ATP),旨在使快速和慢速骨骼肌肌球蛋白合成丝中的松弛结构稳定下来。丝状物由柱纯化的肌球蛋白(兔快速骨骼肌和兔慢速骨骼肌半膜肌)形成。在存在0.1 mM游离Ca2+、3 mM Mg2+和2 mM ATP(激活条件)的情况下,这些丝状物具有伸展结构,肌球蛋白头部和从丝状物主干突出的亚片段2随机排列。这种结构与先前在存在0.1 mM游离Ca2+的情况下观察到的快速骨骼肌、心肌(见上述参考文献)和平滑肌(Podlubnaya等人,1999年,《肌肉研究与细胞运动》20卷,第547 - 554页)肌球蛋白的丝状物结构无法区分。在无Ca2+且存在ATP(松弛条件)的情况下,两种被研究的肌球蛋白的丝状物都呈现出紧密的有序结构。快速骨骼肌肌球蛋白丝状物表现出约14.5 nm的轴向周期性,这比在无Ca2+的严格条件下(见第一个引用参考文献)更为明显。慢速骨骼肌肌球蛋白丝状物在外观上与快速肌球蛋白丝状物略有不同,因为它们主要表现出约43 nm的轴向重复,而14.5 nm的重复仅在某些区域可见。这可能是慢速骨骼肌肌球蛋白结构特性略有不同的结果。我们得出结论,与脊椎动物肌球蛋白的其他丝状物一样,慢速骨骼肌肌球蛋白丝状物也经历Ca2+诱导的结构有序 - 无序转变。很可能所有脊椎动物肌肉肌球蛋白都具有这种特性。

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