McKoy G, Léger M E, Bacou F, Goldspink G
Department of Anatomy and Developmental Biology, Royal Free Hospital School of Medicine, University of London, United Kingdom.
Dev Dyn. 1998 Mar;211(3):193-203. doi: 10.1002/(SICI)1097-0177(199803)211:3<193::AID-AJA1>3.0.CO;2-C.
Myosin heavy chains (hcs) are the major determinant in the speed of contraction of skeletal muscle, and various isoforms are differentially expressed depending on the functional activity of the muscle. Using the rapid amplification of cDNA ends (3' RACE) method, we have characterised the 3' end of the embryonic, perinatal, type 1, 2a, 2x, and 2b myosin hc genes in rabbit skeletal muscle and used them as probes in RNase protection assays to quantitatively monitor their expression in different type of skeletal muscles just before and after birth. SDS PAGE was used to study the changes in the expression level of their respective protein and to determine the relative abundance of each myosin hc isoform in the muscles studied. The results show that for each anatomical muscle, the developmental changes in myosin hc gene expression at the mRNA level correlate strongly to those observed at the protein level. By studying their developmental expression in four functionally diverse skeletal muscles (semimembranosus proprius, diaphragm, tibialis anterior, and semimembranosus accessorius), it was shown that all muscles express the embryonic, perinatal, and type 1 isoform during prenatal development up to the E27 stage. In the diaphragm, low levels of the type 2a and 2x transcripts, which are adult fast isoforms, were also detected at the E27 stage. During the first week of postnatal growth the myosin hc transition leading to the expression of the adult isoforms is complex, and as many as five different myosin heavy chains are concurrently expressed in some muscles at around birth. As the animal matures, individual muscles become adapted to perform highly specialised functions, and this is reflected in the myosin hc composition within these muscles. Accordingly, the expression of the type 1 isoform, and the sequence of appearance and the expression levels of the type 2 isoforms, were exclusively dependent on the muscle type and largely reflect the functional activity of each muscle during the postnatal growth period.
肌球蛋白重链(hcs)是骨骼肌收缩速度的主要决定因素,并且根据肌肉的功能活动,各种同工型会有差异地表达。利用cDNA末端快速扩增(3' RACE)方法,我们对兔骨骼肌中胚胎型、围生期型、1型、2a型、2x型和2b型肌球蛋白hc基因的3' 末端进行了特征分析,并将它们用作核糖核酸酶保护分析中的探针,以定量监测它们在出生前后不同类型骨骼肌中的表达。十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS PAGE)用于研究它们各自蛋白质表达水平的变化,并确定所研究肌肉中每种肌球蛋白hc同工型的相对丰度。结果表明,对于每块解剖学肌肉,肌球蛋白hc基因在mRNA水平上的发育变化与在蛋白质水平上观察到的变化密切相关。通过研究它们在四块功能不同的骨骼肌(半膜肌固有部、膈肌、胫骨前肌和副半膜肌)中的发育表达,结果显示在产前发育直至E27阶段,所有肌肉都表达胚胎型、围生期型和1型同工型。在膈肌中,在E27阶段也检测到了低水平的2a型和2x型转录本,它们是成年快速同工型。在出生后生长的第一周,导致成年同工型表达的肌球蛋白hc转变很复杂,并且在出生前后某些肌肉中同时表达多达五种不同的肌球蛋白重链。随着动物成熟,各个肌肉适应执行高度专业化的功能,这反映在这些肌肉内的肌球蛋白hc组成上。因此,1型同工型的表达以及2型同工型的出现顺序和表达水平完全取决于肌肉类型,并且在很大程度上反映了出生后生长期间每块肌肉的功能活动。