Manoharan Palanikumar, Song Taejeong, Radzyukevich Tatiana L, Sadayappan Sakthivel, Lingrel Jerry B, Heiny Judith A
Department of Molecular Genetics, Biochemistry, and Microbiology, University of Cincinnati, College of Medicine, Cincinnati, OH 45267, USA.
Department of Internal Medicine, Heart, Lung and Vascular Institute, University of Cincinnati, College of Medicine, Cincinnati, OH 45267, USA.
iScience. 2019 Jul 26;17:334-346. doi: 10.1016/j.isci.2019.07.009. Epub 2019 Jul 8.
Skeletal muscle repair and regeneration after injury requires coordinated interactions between the innate immune system and the injured muscle. Myeloid cells predominate in these interactions. This study examined the role of KLF2, a zinc-finger transcription factor that regulates immune cell activation, in specifying myeloid cell functions during muscle regeneration. Loss of KLF2 in myeloid lineage cells (myeKlf2 mice) dramatically enhanced the initial inflammatory response to acute muscle injury (cardiotoxin). Injured muscles showed dramatically elevated expression of inflammatory mediators and greater numbers of infiltrating, pro-inflammatory monocytes that matured earlier into activated macrophages. Notably, the inflammatory phase resolved earlier and regeneration progressed to myogenesis, marked by elevated expression of factors that promote the formation of new fibers from satellite cells. Regeneration was completed earlier, with phenotypically normal adult fibers integrated into the muscle syncytium. These findings identify myeloid KLF2 as a key regulator of myeloid cell functions in adult skeletal muscle regeneration.
损伤后骨骼肌的修复和再生需要先天免疫系统与受损肌肉之间的协同相互作用。髓样细胞在这些相互作用中占主导地位。本研究探讨了KLF2(一种调节免疫细胞活化的锌指转录因子)在肌肉再生过程中对髓样细胞功能的特异性作用。髓样谱系细胞中KLF2缺失(myeKlf2小鼠)显著增强了对急性肌肉损伤(心脏毒素)的初始炎症反应。受损肌肉中炎症介质的表达显著升高,浸润的促炎单核细胞数量增多,且这些单核细胞更早成熟为活化巨噬细胞。值得注意的是,炎症期更早消退,再生进入肌生成阶段,其标志是促进卫星细胞形成新纤维的因子表达升高。再生更早完成,表型正常的成年纤维整合到肌肉合胞体中。这些发现表明髓样KLF2是成年骨骼肌再生中髓样细胞功能的关键调节因子。