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首页> 外文期刊>The Journal of investigative dermatology. >Bmi-1 reduction plays a key role in physiological and premature aging of primary human keratinocytes.
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Bmi-1 reduction plays a key role in physiological and premature aging of primary human keratinocytes.

机译:Bmi-1的减少在原代人角质形成细胞的生理和过早衰老中起关键作用。

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Accumulation of senescent cells contributes to the reduced regenerative capacity in aged tissues. By evaluating the molecular pathways of senescence in relation to proliferative potential of primary keratinocyte cultures from young and old healthy donors, and from young patients with inherited defects leading to premature aging, we demonstrated that p16(INK4a) is a reliable marker of both physiological and premature epidermal aging. Analysis of the expression and activity of p16(INK4a) regulators showed that stem cell depletion, reduced proliferation, and p16(INK4a) upregulation in keratinocytes derived from the chronologically and prematurely aged epidermis strongly correlate with Bmi-1 downregulation. In highly proliferative tissues, replicative and premature senescence participate in determining senescent cell accumulation. Our findings demonstrated that Bmi-1 is downregulated in human keratinocytes during both in vitro processes, in parallel with p16(INK4a) upregulation and accomplishment of clonal conversion. When premature senescence was induced by specific exogenous stimuli, concomitant Ets-1 upregulation was also observed. Moreover, Bmi-1 inhibited Ets-1-mediated p16(INK4a) upregulation. Finally, Bmi-1 overexpression reduced p16(INK4a) promoter activity and decreased protein expression in aged and diseased keratinocytes, inducing a delay of clonal conversion and an increase of cell clonogenic ability. Altogether these findings underline a key role of Bmi-1 downregulation in enforcing aging in primary human keratinocytes.
机译:衰老细胞的积累导致衰老组织的再生能力降低。通过评估衰老的分子途径与来自年轻和年老健康供体以及患有导致早衰的遗传缺陷的年轻患者的原代角质形成细胞培养物增殖潜力的关系,我们证明了p16(INK4a)是生理和生理学的可靠标记表皮过早老化。对p16(INK4a)调节剂的表达和活性的分析表明,在按时间顺序和过早衰老的表皮衍生的角质形成细胞中,干细胞的耗竭,增殖减少和p16(INK4a)上调与Bmi-1的下调密切相关。在高度增生的组织中,复制性和过早衰老参与确定衰老细胞的积累。我们的发现表明,在两个体外过程中,人角化细胞中的Bmi-1均下调,与p16(INK4a)上调和克隆转化的完成同时进行。当特定的外源性刺激诱导过早衰老时,还观察到了伴随的Ets-1上调。此外,Bmi-1抑制Ets-1介导的p16(INK4a)上调。最后,Bmi-1的过表达降低了老年和患病角质形成细胞中p16(INK4a)启动子的活性并降低了蛋白质的表达,从而导致克隆转化的延迟和细胞克隆能力的提高。总而言之,这些发现强调了Bmi-1下调在增强人类原代角质形成细胞衰老中的关键作用。

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