Soukup T, Pedrosa-Domellöf F, Thornell L E
Institute of Physiology, Academy of Sciences, Prague, Czech Republic.
Microsc Res Tech. 1995 Apr 1;30(5):390-407. doi: 10.1002/jemt.1070300506.
This review concerns the pattern of expression and regulation of myosin heavy chain (MHC) isoforms in intrafusal fibres of rat muscle spindles detected by immunocytochemistry. The three types of intrafusal fibres--nuclear bag1, nuclear bag2, and nuclear chain fibres--are unique in co-expressing several MHCs including special isoforms such as slow tonic and alpha cardiac-like MHC and isoforms typical of muscle development, such as embryonic and neonatal MHC. The distinct intrafusal fibre types appear sequentially during rat hind limb development, the nuclear bag2 precursors being first identifiable at 17-18 days in utero as the only primary myotubes expressing slow tonic MHC. Sensory innervation is required for the expression of "spindle-specific" MHC isoforms. Motor innervation contributes to the diversity in distribution of the different MHCs along the length of the nuclear bag fibres. It is suggested that unique populations of myoblasts are destined to become intrafusal fibres during development in the rat hind limb muscles and that the regional heterogeneity in MHC expression is related both to sensory and motor innervation and to the properties of the myoblast lineages. These distinct features make intrafusal fibres an attractive in situ model for investigating myogenesis, myofibrillogenesis, and the mechanisms regulating MHC expression.
本综述涉及通过免疫细胞化学检测大鼠肌梭梭内纤维中肌球蛋白重链(MHC)亚型的表达模式和调控。三种类型的梭内纤维——核袋1纤维、核袋2纤维和核链纤维——在共同表达多种MHC方面具有独特性,包括特殊亚型如慢强直性和α-心脏样MHC,以及肌肉发育典型的亚型如胚胎型和新生儿型MHC。在大鼠后肢发育过程中,不同类型的梭内纤维依次出现,核袋2纤维的前体在子宫内17 - 18天时首次可识别,是唯一表达慢强直性MHC的初级肌管。“纺锤体特异性”MHC亚型的表达需要感觉神经支配。运动神经支配有助于不同MHC沿核袋纤维长度分布的多样性。有人提出,在大鼠后肢肌肉发育过程中,独特的成肌细胞群体注定会成为梭内纤维,并且MHC表达的区域异质性与感觉和运动神经支配以及成肌细胞谱系的特性都有关。这些独特特征使梭内纤维成为研究肌生成、肌原纤维生成以及调控MHC表达机制的有吸引力的原位模型。