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在水螅再生和体内平衡中是必需的。

Is Required for Planarian Regeneration and Homeostasis.

机构信息

Department of Basic Medicine, Luohe Medical College, Luohe 462002, China.

College of Life Sciences, Henan Normal University, Xinxiang 453007, China.

出版信息

Biomolecules. 2022 Jun 9;12(6):808. doi: 10.3390/biom12060808.

Abstract

HSP60, a well-known mitochondrial chaperone, is essential for mitochondrial homeostasis. HSP60 deficiency causes dysfunction of the mitochondria and is lethal to animal survival. Here, we used freshwater planarian as a model system to investigate and uncover the roles of HSP60 in tissue regeneration and homeostasis. HSP60 protein is present in all types of cells in planarians, but it is relatively rich in stem cells and head neural cells. Knockdown of HSP60 by RNAi causes head regression and the loss of regenerating abilities, which is related to decrease in mitotic cells and inhibition of stem cell-related genes. RNAi-HSP60 disrupts the structure of the mitochondria and inhibits the mitochondrial-related genes, which mainly occur in intestinal tissues. RNAi-HSP60 also damages the integrity of intestinal tissues and downregulates intestine-expressed genes. More interestingly, RNAi-HSP60 upregulates the expression of the cathepsin L-like gene, which may be the reason for head regression and necrotic-like cell death. Taking these points together, we propose a model illustrating the relationship between neoblasts and intestinal cells, and also highlight the essential role of the intestinal system in planarian regeneration and tissue homeostasis.

摘要

热休克蛋白 60(HSP60)是一种众所周知的线粒体伴侣蛋白,对于线粒体的稳态至关重要。HSP60 缺乏会导致线粒体功能障碍,对动物的生存是致命的。在这里,我们使用淡水涡虫作为模型系统,研究并揭示了 HSP60 在组织再生和稳态中的作用。HSP60 蛋白存在于涡虫的所有类型的细胞中,但在干细胞和头部神经细胞中相对丰富。通过 RNAi 敲低 HSP60 会导致头部退化和再生能力丧失,这与有丝分裂细胞减少和干细胞相关基因抑制有关。RNAi-HSP60 破坏了线粒体的结构并抑制了与线粒体相关的基因,主要发生在肠道组织中。RNAi-HSP60 还会损害肠道组织的完整性并下调肠道表达的基因。更有趣的是,RNAi-HSP60 上调了组织蛋白酶 L 样基因的表达,这可能是头部退化和坏死样细胞死亡的原因。综上所述,我们提出了一个模型,说明了成体干细胞和肠道细胞之间的关系,并强调了肠道系统在涡虫再生和组织稳态中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6565/9221281/6af3e7bbd3c0/biomolecules-12-00808-g001.jpg

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