...
首页> 外文期刊>Stem Cell Research & Therapy >The less-often-traveled surface of stem cells: caveolin-1 and caveolae in stem cells, tissue repair and regeneration
【24h】

The less-often-traveled surface of stem cells: caveolin-1 and caveolae in stem cells, tissue repair and regeneration

机译:干细胞旅行较少的表面:干细胞中的小窝蛋白1和小窝,组织修复和再生

获取原文
获取原文并翻译 | 示例

摘要

Stem cells are an important resource for tissue repair and regeneration. While a great deal of attention has focused on derivation and molecular regulation of stem cells, relatively little research has focused on how the subcellular structure and composition of the cell membrane influences stem cell activities such as proliferation, differentiation and homing. Caveolae are specialized membrane lipid rafts coated with caveolin scaffolding proteins, which can regulate cholesterol transport and the activity of cell signaling receptors and their downstream effectors. Caveolin-1 is involved in the regulation of many cellular processes, including growth, control of mitochondrial antioxidant levels, migration and senescence. These activities are of relevance to stem cell biology, and in this review evidence for caveolin-1 involvement in stem cell biology is summarized. Altered stem and progenitor cell populations in caveolin-1 null mice suggest that caveolin-1 can regulate stem cell proliferation, and in vitro studies with isolated stem cells suggest that caveolin-1 regulates stem cell differentiation. The available evidence leads us to hypothesize that caveolin-1 expression may stabilize the differentiated and undifferentiated stem cell phenotype, and transient downregulation of caveolin-1 expression may be required for transition between the two. Such regulation would probably be critical in regenerative applications of adult stem cells and during tissue regeneration. We also review here the temporal changes in caveolin-1 expression reported during tissue repair. Delayed muscle regeneration in transgenic mice overexpressing caveolin-1 as well as compromised cardiac, brain and liver tissue repair and delayed wound healing in caveolin-1 null mice suggest that caveolin-1 plays an important role in tissue repair, but that this role may be negative or positive depending on the tissue type and the nature of the repair process. Finally, we also discuss how caveolin-1 quiescence-inducing activities and effects on mitochondrial antioxidant levels may influence stem cell aging.
机译:干细胞是组织修复和再生的重要资源。尽管大量注意力集中在干细胞的衍生和分子调控上,但相对较少的研究集中在细胞膜的亚细胞结构和组成如何影响干细胞活性(如增殖,分化和归巢)上。 Caveolae是涂有Caveolin支架蛋白的专门膜脂筏,可以调节胆固醇的转运以及细胞信号受体及其下游效应子的活性。 Caveolin-1参与许多细胞过程的调节,包括生长,线粒体抗氧化剂水平的控制,迁移和衰老。这些活动与干细胞生物学有关,在本综述中,总结了caveolin-1参与干细胞生物学的证据。 Caveolin-1 null小鼠的干细胞和祖细胞数量发生变化,表明Caveolin-1可以调节干细胞增殖,而离体干细胞的体外研究表明Caveolin-1可以调节干细胞分化。现有的证据使我们假设小窝蛋白1的表达可以稳定分化和未分化的干细胞表型,并且在两者之间过渡可能需要短暂降低小窝蛋白1的表达。这种调节在成体干细胞的再生应用中和组织再生过程中可能至关重要。我们还在这里回顾组织修复过程中报道的caveolin-1表达的时间变化。过表达caveolin-1的转基因小鼠的肌肉再生延迟以及心脏,脑和肝组织修复受损以及caveolin-1 null小鼠的伤口愈合延迟提示caveolin-1在组织修复中起重要作用,但这种作用可能是阴性或阳性取决于组织类型和修复过程的性质。最后,我们还讨论了Caveolin-1静止诱导活性以及对线粒体抗氧化剂水平的影响如何影响干细胞衰老。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号