Tokuyasu K T, Maher P A, Singer S J
J Cell Biol. 1985 Apr;100(4):1157-66. doi: 10.1083/jcb.100.4.1157.
The distribution of the intermediate filament proteins vimentin and desmin in developing and mature myotubes in vivo was studied by single and double immunoelectron microscopic labeling of ultrathin frozen sections of iliotibialis muscle in 7-21-d-old chick embryos, and neonatal and 1-d-old postnatal chicks. This work is an extension of our previous immunofluorescence studies of the same system (Tokuyasu, K. T., P. A. Maher and S. J. Singer, 1984, J. Cell Biol., 98:1961-1972). In immature myotubes of 7-11-d embryos, significant labeling for desmin and vimentin was found only in intermediate filaments, and these proteins coexisted in the same individual filaments. Each of the two proteins was present in irregular clusters along the entire length of a filament. No exclusively vimentin- or desmin-containing filaments were observed at this stage. In the early myotubes, the intermediate filaments were essentially all longitudinally oriented, even when they contained three times as much desmin as vimentin. No special relationship was recognized between the dispositions of the filaments and the organization of the myofibrils. Occasionally, several myofibrils were already aligned in lateral registry at this early stage, but labeling for desmin and vimentin was largely absent at the level of the Z bands. Instead, the Z bands appeared to be covered by elements of the sarcoplasmic reticulum. The confinement of intermediate filaments to the level of the Z bands occurred in the myotubes of later embryos after the extensive lateral registry of the Z bands. Thus, intermediate filaments are unlikely to play a primary role in producing the lateral registration of myofibrils during myogenesis, but may be important in determining the polarization of the early myotube and the alignment of its organelles. Throughout the development of myotubes, desmin and vimentin remained in the form of intermediate filaments, although the number of filaments per unit volume of myotube appeared to be reduced as myofibrils increased in number in maturing myotubes. This observation indicated that the transverse orientation of intermediate filaments in mature myotubes does not result from the de novo polymerization of subunits from Z band to Z band, but a continuous shifting of the positions and directions of intact filaments.
通过对7至21日龄鸡胚、新生雏鸡和出生后1日龄雏鸡的髂胫束肌超薄冰冻切片进行单重和双重免疫电子显微镜标记,研究了中间丝蛋白波形蛋白和结蛋白在体内发育中和成熟肌管中的分布情况。这项工作是我们之前对同一系统进行免疫荧光研究的扩展(德久保泰雄、P. A. 马赫和S. J. 辛格,1984年,《细胞生物学杂志》,98:1961 - 1972)。在7至11日龄胚胎的未成熟肌管中,仅在中间丝中发现了显著的结蛋白和波形蛋白标记,并且这些蛋白质共存于同一根丝中。这两种蛋白质中的每一种都沿着丝的全长以不规则簇的形式存在。在这个阶段未观察到仅含波形蛋白或仅含结蛋白的丝。在早期肌管中,即使中间丝中结蛋白的含量是波形蛋白的三倍,中间丝基本上都是纵向排列的。在丝的排列与肌原纤维的组织之间未发现特殊关系。偶尔,在这个早期阶段已经有几条肌原纤维在横向对齐,但在Z带水平基本没有结蛋白和波形蛋白的标记。相反,Z带似乎被肌浆网的成分覆盖。在Z带广泛横向对齐后,中间丝在后期胚胎的肌管中局限于Z带水平。因此,中间丝在肌生成过程中不太可能在产生肌原纤维的横向对齐中起主要作用,但可能在确定早期肌管的极化及其细胞器的排列方面很重要。在肌管的整个发育过程中,结蛋白和波形蛋白一直保持中间丝的形式,尽管随着成熟肌管中肌原纤维数量的增加,每单位体积肌管中的丝数量似乎减少了。这一观察结果表明,成熟肌管中中间丝的横向取向不是由亚基从Z带到Z带的从头聚合产生的,而是完整丝的位置和方向的持续移动。