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线粒体在行动:疾病与健康中的线粒体横向转移。

Mitochondria on the move: Horizontal mitochondrial transfer in disease and health.

机构信息

School of Pharmacy and Medical Sciences, Griffith University , Southport, Australia.

Institute of Biotechnology, Academy of Sciences of the Czech Republic , Prague-West, Czech Republic.

出版信息

J Cell Biol. 2023 Mar 6;222(3). doi: 10.1083/jcb.202211044. Epub 2023 Feb 16.

Abstract

Mammalian genes were long thought to be constrained within somatic cells in most cell types. This concept was challenged recently when cellular organelles including mitochondria were shown to move between mammalian cells in culture via cytoplasmic bridges. Recent research in animals indicates transfer of mitochondria in cancer and during lung injury in vivo, with considerable functional consequences. Since these pioneering discoveries, many studies have confirmed horizontal mitochondrial transfer (HMT) in vivo, and its functional characteristics and consequences have been described. Additional support for this phenomenon has come from phylogenetic studies. Apparently, mitochondrial trafficking between cells occurs more frequently than previously thought and contributes to diverse processes including bioenergetic crosstalk and homeostasis, disease treatment and recovery, and development of resistance to cancer therapy. Here we highlight current knowledge of HMT between cells, focusing primarily on in vivo systems, and contend that this process is not only (patho)physiologically relevant, but also can be exploited for the design of novel therapeutic approaches.

摘要

哺乳动物的基因长期以来被认为在大多数细胞类型的体细胞中受到限制。最近,当包括线粒体在内的细胞细胞器被证明可以通过细胞质桥在培养的哺乳动物细胞之间移动时,这一概念受到了挑战。最近在动物中的研究表明,线粒体在癌症和体内肺损伤期间转移,具有相当大的功能后果。自这些开创性的发现以来,许多研究已经证实了体内的水平线粒体转移 (HMT),并描述了其功能特征和后果。来自系统发育研究的额外支持也证明了这一现象的存在。显然,细胞之间的线粒体运输比以前认为的更频繁,并且有助于包括生物能量串扰和动态平衡、疾病治疗和恢复以及对癌症治疗耐药性的发展在内的多种过程。在这里,我们重点介绍细胞间 HMT 的最新知识,主要集中在体内系统上,并认为这一过程不仅具有(病理)生理学意义,而且还可以用于设计新的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0e9/9960264/4c4098c6445e/JCB_202211044_Fig1.jpg

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