Department of Animal and Marine Bioresource Sciences, Graduate School of Agriculture, Kyushu University, Fukuoka, Japan.
Department of Physiology, Faculty of Veterinary Medicine, Kafrelsheikh University, Kafrelsheikh, Egypt.
Aging Cell. 2024 Feb;23(2):e14041. doi: 10.1111/acel.14041. Epub 2023 Nov 20.
Mechanical perturbation triggers activation of resident myogenic stem cells to enter the cell cycle through a cascade of events including hepatocyte growth factor (HGF) release from its extracellular tethering and the subsequent presentation to signaling-receptor c-met. Here, we show that with aging, extracellular HGF undergoes tyrosine-residue (Y) nitration and loses c-met binding, thereby disturbing muscle homeostasis. Biochemical studies demonstrated that nitration/dysfunction is specific to HGF among other major growth factors and is characterized by its locations at Y198 and Y250 in c-met-binding domains. Direct-immunofluorescence microscopy of lower hind limb muscles from three age groups of rat, provided direct in vivo evidence for age-related increases in nitration of ECM-bound HGF, preferentially stained for anti-nitrated Y198 and Y250-HGF mAbs (raised in-house) in fast IIa and IIx myofibers. Overall, findings highlight inhibitory impacts of HGF nitration on myogenic stem cell dynamics, pioneering a cogent discussion for better understanding age-related muscle atrophy and impaired regeneration with fibrosis (including sarcopenia and frailty).
机械扰动通过一系列事件触发驻留肌源性干细胞的激活,进入细胞周期,包括从细胞外连接释放肝细胞生长因子 (HGF),以及随后向信号受体 c-met 的呈现。在这里,我们表明,随着年龄的增长,细胞外 HGF 经历酪氨酸残基 (Y) 硝化,失去与 c-met 的结合,从而扰乱肌肉内稳态。生化研究表明,硝化/功能障碍在其他主要生长因子中是 HGF 特有的,其特征在于其在 c-met 结合域中的 Y198 和 Y250 位置。来自三个年龄组大鼠下肢肌肉的直接免疫荧光显微镜检查提供了与年龄相关的 ECM 结合的 HGF 硝化增加的直接体内证据,优先用抗硝化 Y198 和 Y250-HGF mAb(在内部制备)对快 IIa 和 IIx 肌纤维进行染色。总的来说,这些发现强调了 HGF 硝化对肌源性干细胞动力学的抑制作用,为更好地理解与纤维化相关的肌肉萎缩和再生受损(包括肌肉减少症和脆弱)开辟了一个有说服力的讨论。