Lillehei Heart Institute.
Biochemistry, Molecular Biology, and Biophysics Graduate Program and.
J Clin Invest. 2022 Dec 1;132(23):e165322. doi: 10.1172/JCI165322.
Muscle fibers express particular isoforms of contractile proteins, depending on the fiber's function and the organism's developmental stage. In the adult, after a muscle injury, newly generated fibers transition through embryonic and neonatal myosins, prior to selecting their distinctive adult myosin isoform. In this issue of the JCI, Wang et al. discover a checkpoint that regulates the neonatal-to-adult myosin isoform transition. They found that HIF-1α regulated this checkpoint, with elevated HIF-1α levels blocking progression, while HIF-1α knockout accelerated the transition. They further related these findings to centronuclear myopathy, a disease in which HIF-1α is similarly elevated and neonatal myosin expression is maintained. These findings highlight a maturation checkpoint that impacts the skeletal muscle regeneration following ischemic injury, providing a pharmacologically accessible pathway in injury and diseases such as centronuclear myopathy.
肌肉纤维根据其功能和生物体的发育阶段表达特定的收缩蛋白同工型。在成年后,肌肉损伤后,新生成的纤维通过胚胎和新生儿肌球蛋白过渡,然后选择其独特的成人肌球蛋白同工型。在本期 JCI 中,Wang 等人发现了一个调节新生儿到成人肌球蛋白同工型转变的检查点。他们发现 HIF-1α 调节这个检查点,升高的 HIF-1α 水平阻止进展,而 HIF-1α 敲除则加速了转变。他们进一步将这些发现与核性肌病联系起来,在核性肌病中,HIF-1α 同样升高,并且维持着新生儿肌球蛋白的表达。这些发现强调了一个成熟检查点,该检查点影响缺血性损伤后的骨骼肌再生,为损伤和疾病(如核性肌病)提供了一种可通过药物干预的途径。