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Nebulin as a length regulator of thin filaments of vertebrate skeletal muscles: correlation of thin filament length nebulin size and epitope profile

机译:神经蛋白作为脊椎动物骨骼肌细丝的长度调节剂:细丝长度蛋白大小和表位特征的相关性

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摘要

Nebulin, a family of giant proteins with size-variants from 600 to 900 kD in various skeletal muscles, have been proposed to constitute a set of inextensible filaments anchored at the Z line (Wang, K., and J. Wright. 1988. J. Cell Biol. 107:2199-2212). This newly discovered filament of the skeletal muscle sarcomere is an attractive candidate for a length-regulating template of thin filaments. To evaluate this hypothesis, we address the question of coextensiveness of nebulin and the thin filament by searching for a correlation between the size of nebulin variants and the length distribution of the thin filaments in several skeletal muscles. A positive linear correlation indeed exists for a group of six skeletal muscles that display narrow thin filament length distributions. To examine the molecular and architectural differences of nebulin size-variants, we carried out immunoelectron microscopic studies to map out epitope profiles of nebulin variants in these muscles. For this purpose, a panel of mAbs to distinct nebulin epitopes was produced against rabbit nebulin purified by an improved protocol. Epitope profiles of nebulin variants in three skeletal muscles revealed that (a) nebulin is inextensible since nebulin epitopes maintain a fixed distance to the Z line irrespective of the degree of sarcomere stretch; (b) a single nebulin polypeptide spans a minimal distance of 0.9 microns from the Z line; (c) nebulin contains repeating epitopes that are spaced at 40 nm or its multiples; (d) nebulin repeats coincide with thin filament periodicity; (e) nebulin variants differ mainly at either or both ends; and (f) nebulin remains in the sarcomere in actin-free sarcomeres produced by gelsolin treatment. Together, these data suggest that nebulin is an inextensible full-length molecular filament that is coextensive with thin filaments in skeletal muscles. We propose that nebulin acts as a length- regulating template that determines thin filament length by matching its large number of 40-nm repeating domains with an equal number of helical repeats of the actin filaments.
机译:Nebulin是一个巨大的蛋白质家族,在各种骨骼肌中的大小变异在600至900 kD之间,已提出构成锚定在Z线上的一组不可伸长的细丝(Wang,K.和J. Wright。1988.J。 (Cell Biol.107:2199-2212)。这种新发现的骨骼肌肌节细丝是细丝长度调节模板的一个有吸引力的候选者。为了评估该假设,我们通过寻找在许多骨骼肌中的雾状蛋白变体的大小与细丝的长度分布之间的相关性,解决了雾蛋白与细丝的共延性问题。对于一组显示狭窄细丝长度分布的六个骨骼肌确实存在正线性相关。为了检查星云蛋白大小变异的分子和结构差异,我们进行了免疫电子显微镜研究,以绘制出这些肌肉中星云蛋白变异的表位特征。为此目的,针对通过改进方案纯化的兔星云蛋白产生了一组针对不同星云蛋白表位的mAb。在三个骨骼肌中,nebulin变异的抗原决定簇特征表明:(a)nebulin是不可扩展的,因为neurin抗原决定簇与Z线的距离保持固定,而与肌节肌的伸展程度无关。 (b)单个星云蛋白多肽距Z线的最小距离为0.9微米; (c)星云蛋白含有间隔为40 nm或其倍数的重复表位; (d)重复的细雾状周期性的雾状蛋白; (e)星云蛋白变异主要在两端或两端不同; (f)在凝溶胶蛋白处理后产生的无肌动蛋白的肉瘤中,神经节蛋白残留在肌节中。总之,这些数据表明,星云蛋白是一种不可延伸的全长分子丝,与骨骼肌中的细丝共存。我们提出,星云蛋白可作为长度调节模板,通过将其大量的40 nm重复域与相等数量的肌动蛋白丝螺旋重复相匹配来确定细丝长度。

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