Center for Physiology and Pathophysiology, Institute for Vegetative Physiology,University of Cologne, Cologne, Germany.
Stem Cells. 2011 Sep;29(9):1459-68. doi: 10.1002/stem.695.
Tissue stem cells and germ line or embryonic stem cells were shown to have reduced oxidative metabolism, which was proposed to be an adaptive mechanism to reduce damage accumulation caused by reactive oxygen species. However, an alternate explanation is that stem cells are less dependent on specialized cytoplasmic functions compared with differentiated cells, therefore, having a high nuclear-to-cytoplasmic volume ratio and consequently a low mitochondrial content. To determine whether stem cells rely or not on mitochondrial respiration, we selectively ablated the electron transport chain in the basal layer of the epidermis, which includes the epidermal progenitor/stem cells (EPSCs). This was achieved using a loxP-flanked mitochondrial transcription factor A (Tfam) allele in conjunction with a keratin 14 Cre transgene. The epidermis of these animals (Tfam(EKO)) showed a profound depletion of mitochondrial DNA and complete absence of respiratory chain complexes. However, despite a short lifespan due to malnutrition, epidermal development and skin barrier function were not impaired. Differentiation of epidermal layers was normal and no proliferation defect or major increase of apoptosis could be observed. In contrast, mice with an epidermal ablation of prohibitin-2, a scaffold protein in the inner mitochondrial membrane, displayed a dramatic phenotype observable already in utero, with severely impaired skin architecture and barrier function, ultimately causing death from dehydration shortly after birth. In conclusion, we here provide unequivocal evidence that EPSCs, and probably tissue stem cells in general, are independent of the mitochondrial respiratory chain, but still require a functional dynamic mitochondrial compartment.
组织干细胞和生殖细胞或胚胎干细胞的氧化代谢较低,这被认为是一种适应性机制,可以减少活性氧引起的损伤积累。然而,另一种解释是,与分化细胞相比,干细胞对细胞质特化功能的依赖性较低,因此,具有高核质比,进而线粒体含量较低。为了确定干细胞是否依赖于线粒体呼吸,我们选择性地在表皮的基底层(包括表皮祖细胞/干细胞(EPSCs))中使电子传递链失活。这是通过使用loxP 侧翼的线粒体转录因子 A(Tfam)等位基因与角蛋白 14 Cre 转基因来实现的。这些动物的表皮(Tfam(EKO))表现出线粒体 DNA 的严重耗竭和呼吸链复合物的完全缺失。然而,尽管由于营养不良导致寿命缩短,但表皮发育和皮肤屏障功能并未受损。表皮层的分化正常,未观察到增殖缺陷或凋亡大量增加。相比之下,在内质网膜中的支架蛋白 prohibitin-2 被表皮消融的小鼠,在子宫内就已经表现出明显的表型,皮肤结构和屏障功能严重受损,最终导致出生后不久因脱水而死亡。总之,我们在这里提供了确凿的证据,证明 EPSCs,可能一般的组织干细胞,不依赖于线粒体呼吸链,但仍需要一个功能动态的线粒体区室。