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Dimerization of tropomyosins.

机译:原肌球蛋白的二聚化。

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摘要

Tropomyosins consist of nearly 100% alpha-helix and assemble into paralleldimeric coiled-coils. Nonmusde as well as muscle tropomyosins can form homodimers, however, expression of both muscle alpha and beta tropomyosin subunits results in the preferential formation of stable alpha/beta heterodimers in native muscle. The assembly preference of the muscle tropomyosin heterodimer can be understood in terms of its thermodynamically favorable energy distribution that provides increased stability over the homodimer. The simultaneous expression of multiple tropomyosin isoforms in nonmuscle cells (at least up to seven individual chains), however, points towards a more complex principle for determining dimer preference. The information for homo- and heterodimerization is contained within the tropomyosin molecule itself and the parameters for dimer selectivity are conferred in part by the alternatively spliced exons. However, it remains to be established if low molecular weight tropomyosin isoforms in nonmuscle cells engage in both homdimer and heterodimer formation in vivo. A thorough understanding of the selective dimer formation of the more than 40 tropomyosin isoforms is required to explain how subtle alterations in the sequence of one tropomyosin chain can result in the progression of diverse disease phenotypes.
机译:肌球蛋白由近100%的α-螺旋组成,并组装成平行二聚体卷曲螺旋。非肌肉肌原肌球蛋白和肌肉原肌球蛋白都可以形成同型二聚体,但是,肌肉α和β原肌球蛋白亚基的表达导致天然肌肉中稳定的α/β异二聚体的优先形成。肌原肌球蛋白异二聚体的装配偏好可以从其热力学上有利的能量分布方面理解,该能量分布提供了比同二聚体更高的稳定性。然而,多种原肌球蛋白同工型在非肌肉细胞中的同时表达(至少多达7条独立链),指出了确定二聚体偏好的更复杂原理。原同和异二聚化的信息包含在原肌球蛋白分子本身内,二聚体选择性的参数部分由交替剪接的外显子提供。但是,在体内非肌肉细胞中的低分子量原肌球蛋白同工型是否参与同二聚体和异二聚体的形成,仍有待确定。需要全面了解40多种原肌球蛋白同工型的选择性二聚体形成,以解释一条原肌球蛋白链序列的细微变化如何导致多种疾病表型的发展。

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