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毛囊干细胞中 Crif1 的缺乏会延缓成年小鼠的毛发生长周期。

Deficiency of Crif1 in hair follicle stem cells retards hair growth cycle in adult mice.

机构信息

Department of Dermatology, School of Medicine, Chungnam National University, Daejeon, Korea.

Department of Medical Science, School of Medicine, Chungnam National University, Daejeon, Korea.

出版信息

PLoS One. 2020 Apr 24;15(4):e0232206. doi: 10.1371/journal.pone.0232206. eCollection 2020.

Abstract

Hair growth is the cyclically regulated process that is characterized by growing phase (anagen), regression phase (catagen) and resting phase (telogen). Hair follicle stem cells (HFSCs) play pivotal role in the control of hair growth cycle. It has been notified that stem cells have the distinguished metabolic signature compared to differentiated cells, such as the preference to glycolysis rather than mitochondrial respiration. Crif1 is a mitochondrial protein that regulates the synthesis and insertion of oxidative phosphorylation (OXPHOS) polypeptides to inner membrane of mitochondria. Several studies demonstrate that tissue-specific knockout of Crif1 leads to mitochondrial dysfunction. In this study, we investigated the effect of mitochondrial dysfunction in terms of Crif1 deficiency on the hair growth cycle of adult mice. We created two kinds of inducible conditional knockout (icKO) mice. In epidermal specific icKO mice (Crif1 K14icKO), hair growth cycle was significantly retarded compared to wild type mice. Similarly, HFSC specific icKO mice (Crif1 K15icKO) showed significant retardation of hair growth cycle in depilation-induced anagen model. Interestingly, flow cytometry revealed that HFSC populations were maintained in Crif1 K15icKO mice. These results suggest that mitochondrial function in HFSCs is important for the progression of hair growth cycle, but not for maintenance of HFSCs.

摘要

头发生长是周期性调节的过程,其特征是生长期(生长期)、退行期(退行期)和休止期(休止期)。毛囊干细胞(HFSCs)在控制头发生长周期中起着关键作用。据报道,与分化细胞相比,干细胞具有独特的代谢特征,例如偏爱糖酵解而不是线粒体呼吸。Crif1 是一种线粒体蛋白,可调节氧化磷酸化(OXPHOS)多肽的合成和插入线粒体的内膜。几项研究表明,组织特异性敲除 Crif1 会导致线粒体功能障碍。在这项研究中,我们研究了线粒体功能障碍(Crif1 缺乏)对成年小鼠头发生长周期的影响。我们创建了两种可诱导的条件性敲除(icKO)小鼠。与野生型小鼠相比,表皮特异性 icKO 小鼠(Crif1 K14icKO)的头发生长周期明显延迟。同样,HFSC 特异性 icKO 小鼠(Crif1 K15icKO)在脱毛诱导的生长期模型中也表现出头发生长周期明显延迟。有趣的是,流式细胞术显示,HFSC 群体在 Crif1 K15icKO 小鼠中得到维持。这些结果表明,HFSCs 中的线粒体功能对头发生长周期的进展很重要,但对 HFSCs 的维持不重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3943/7182249/e3f60b01c66b/pone.0232206.g001.jpg

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