首页> 美国卫生研究院文献>International Journal of Molecular Sciences >DNA Damage-Inducible Transcript 4 Is an Innate Surveillant of Hair Follicular Stress in Vitamin D Receptor Knockout Mice and a Regulator of Wound Re-Epithelialization
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DNA Damage-Inducible Transcript 4 Is an Innate Surveillant of Hair Follicular Stress in Vitamin D Receptor Knockout Mice and a Regulator of Wound Re-Epithelialization

机译:DNA损伤诱导转录本4是维生素D受体敲除小鼠中毛囊压力的先天监测剂也是伤口上皮再生的调节剂。

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摘要

Mice and human patients with impaired vitamin D receptor (VDR) signaling have normal developmental hair growth but display aberrant post-morphogenic hair cycle progression associated with alopecia. In addition, VDR–/– mice exhibit impaired cutaneous wound healing. We undertook experiments to determine whether the stress-inducible regulator of energy homeostasis, DNA damage-inducible transcript 4 (Ddit4), is involved in these processes. By analyzing hair cycle activation in vivo, we show that VDR−/− mice at day 14 exhibit increased Ddit4 expression within follicular stress compartments. At day 29, degenerating VDR−/− follicular keratinocytes, but not bulge stem cells, continue to exhibit an increase in Ddit4 expression. At day 47, when normal follicles and epidermis are quiescent and enriched for Ddit4, VDR−/− skin lacks Ddit4 expression. In a skin wound healing assay, the re-epithelialized epidermis in wildtype (WT) but not VDR−/− animals harbor a population of Ddit4- and Krt10-positive cells. Our study suggests that VDR regulates Ddit4 expression during epidermal homeostasis and the wound healing process, while elevated Ddit4 represents an early growth-arresting stress response within VDR−/− follicles.
机译:维生素D受体(VDR)信号受损的小鼠和人类患者的头发生长正常,但与脱发相关的异常形态发生后的头发循环进程却异常。此外,VDR – / – 小鼠的皮肤伤口愈合受损。我们进行了实验,以确定这些过程中是否涉及压力诱导的能量稳态调节子,DNA损伤诱导转录本4(Ddit4)。通过分析体内的毛发周期激活,我们显示第14天的VDR -/-小鼠在滤泡应激区室中表现出增加的Ddit4表达。在第29天,退化的VDR -/-滤泡角质形成细胞(而不是膨大的干细胞)继续表现出Ddit4表达的增加。在第47天,当正常卵泡和表皮静止并富含Ddit4时,VDR -/-皮肤缺乏Ddit4表达。在皮肤伤口愈合试验中,野生型(WT)中重新上皮的表皮,而不是VDR -/-动物中的Ddit4-和Krt10阳性细胞群。我们的研究表明,VDR在表皮稳态和伤口愈合过程中调节Ddit4的表达,而升高的Ddit4代表VDR -/-卵泡中早期的生长抑制性应激反应。

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