Dr. Phillip Frost Department of Dermatology & Cutaneous Surgery, University of Miami Miller School of Medicine, Miami, Florida, USA.
Monasterium Laboratory, Münster, Germany.
Exp Dermatol. 2020 Dec;29(12):1243-1249. doi: 10.1111/exd.14213.
The molecular nature of the hair cycle clock (HCC), the intrinsic oscillator system that drives hair follicle (HF) cycling, remains incompletely understood; therefore, all relevant key players need to be identified. Here, we present evidence that implicates myelin protein zero-like 3 (MPZL3), a multifunctional nuclear-encoded mitochondrial protein known to be involved in epidermal differentiation, in HCC regulation. By analysing global Mpzl3 knockout (-/-) mice, we show that in the absence of functional MPZL3, mice commence HF cycling with retarded first catagen-telogen transition after normal postnatal HF morphogenesis. However, Mpzl3 -/- mice subsequently display strikingly accelerated HF cycling, i.e. a precocious telogen-to-anagen transition during the second hair cycle, compared to controls, suggesting that MPZL3 inhibits anagen entry. We also show that intrafollicular MPZL3 protein expression fluctuates in a hair cycle-dependent manner. In telogen HFs, MPZL3 is localized to the secondary hair germ, an epicentre of hair cycle regulation, where it partially co-localizes with P-cadherin. In early anagen HF, MPZL3 is localized immediately distal to the proximal hair matrix. These findings introduce the novel concept that mitochondria are more actively involved in hair cycle control than previously recognized and that MPZL3 plays a central role in the HCC.
毛发生长周期时钟(HCC)的分子本质,即驱动毛囊(HF)周期性变化的内在振荡器系统,仍不完全清楚;因此,需要确定所有相关的关键因素。在这里,我们提出证据表明,髓鞘蛋白零样 3(MPZL3),一种多功能的核编码线粒体蛋白,已知参与表皮分化,在 HCC 调节中起作用。通过分析全球 Mpzl3 敲除(-/-)小鼠,我们发现,在缺乏功能性 MPZL3 的情况下,小鼠在正常的产后 HF 形态发生后,HF 开始周期性变化,但第一毛发生长期-静止期过渡延迟。然而,与对照组相比,Mpzl3 -/- 小鼠随后表现出明显加速的 HF 周期性变化,即在第二个毛发周期中,提前从静止期进入生长期,表明 MPZL3 抑制了生长期的进入。我们还表明,毛囊内的 MPZL3 蛋白表达呈周期性变化。在静止期的 HF 中,MPZL3 定位于次级毛发生长中心,这是毛发周期调节的一个中心,它与 P-钙黏蛋白部分共定位。在早期生长期的 HF 中,MPZL3 定位于近端毛基质的远端。这些发现引入了一个新的概念,即线粒体在毛发生长周期控制中的作用比以前认识到的更为积极,而 MPZL3 在 HCC 中起着核心作用。