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线粒体与叶绿体在动植物组织中的共存:交流的意义

Mitochondria and chloroplasts shared in animal and plant tissues: significance of communication.

作者信息

Snyder Christopher, Stefano George B

机构信息

MitoGenetics, LLC, Farmingdale, NY, USA.

出版信息

Med Sci Monit. 2015 May 25;21:1507-11. doi: 10.12659/MSM.894481.

Abstract

Mitochondria have long been recognized as the main source of energy production for the eukaryotic cell. Recent studies have found that the mitochondria have a variety of dynamic functions aside from the production of energy. It communicates bidirectionally with other organelles in order to modulate its energy balance efficiently, as well as maintain homeostasis, ultimately prolonging its own and the cell's longevity. The mitochondria achieves this level of regulation via specific and common bidirectional chemical messengers, especially involving the endoplasmic/sarcoplasmic reticulum (ER/SR), deoxyribonucleoside triphosphates (dNTP's), ATP and the generation of reactive oxygen species (ROS). Its communication network is also involved in stress associated events. In this regard, the activation of the Bax family proteins and the release of cytochrome c occurs during cellular stress. The communication can also promote apoptosis of the cell. When mitochondrial abnormalities cannot be dealt with, there is an increased chance that major illnesses like type 2 diabetes, Alzheimer's disease, and cancer may occur. Importantly, functioning chloroplasts can be found in animals, suggesting conserved chemical messengers during its evolutionary path. The dynamic capacity of mitochondria is also noted by their ability to function anaerobically. Indeed, this latter phenomenon may represent a return to an earlier developmental stage of mitochondria, suggesting certain disorders result from its untimely appearance.

摘要

长期以来,线粒体一直被认为是真核细胞能量产生的主要来源。最近的研究发现,线粒体除了产生能量外,还具有多种动态功能。它与其他细胞器进行双向通信,以便有效地调节其能量平衡,并维持体内平衡,最终延长自身以及细胞的寿命。线粒体通过特定的和常见的双向化学信使来实现这种调节水平,特别是涉及内质网/肌浆网(ER/SR)、脱氧核糖核苷三磷酸(dNTP)、ATP以及活性氧(ROS)的产生。其通信网络也参与与应激相关的事件。在这方面,细胞应激期间会发生Bax家族蛋白的激活和细胞色素c的释放。这种通信也可以促进细胞凋亡。当线粒体异常无法得到处理时,发生2型糖尿病、阿尔茨海默病和癌症等重大疾病的可能性就会增加。重要的是,在动物体内可以发现有功能的叶绿体,这表明在其进化过程中存在保守的化学信使。线粒体的动态能力还体现在它们能够进行无氧功能。事实上,后一种现象可能代表着线粒体回到了更早的发育阶段,这表明某些疾病是由于其过早出现所致。

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