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线粒体代谢调节:帕金森病的一种新治疗方法。

Mitochondrial metabolism modulation: a new therapeutic approach for Parkinson's disease.

机构信息

Centro de Neurociências e Biologia Celular, Faculdade de Medicina, Universidade de Coimbra, 3004-517 Coimbra, Portugal.

出版信息

CNS Neurol Disord Drug Targets. 2010 Mar;9(1):105-19. doi: 10.2174/187152710790966687.

Abstract

Mitochondrial metabolism is a highly orchestrated phenomenon in which many enzyme systems cooperate in a variety of pathways to dictate cellular fate. As well as its vital role in cellular energy metabolism (ATP production), mitochondria are powerful organelles that regulate reactive oxygen species production, NAD+/NADH ratio and programmed cell death. In addition, mitochondrial abnormalities have been well recognized to contribute to degenerative diseases, like Parkinson's disease (PD). Particularly a deficiency in the mitochondrial respiratory chain complex I and cristae disruption have been consistently described in PD. Moreover, the products of PD-familial genes, including alpha-synuclein, Parkin, PINK1, DJ-1, LRRK2 and HTR2A, were shown to localize to the mitochondria under certain conditions. It seems that PD has a mitochondrial component so events that would modulate normal mitochondrial functions may compromise neuronal survival. However, it remains an open question whether alterations of these pathways lead to different aspects of PD or whether they converge at a point that is the common denominator of PD pathogenesis. In this review we will focus on mitochondrial metabolic control and its implications on sirtuins activation, microtubule dynamics and autophagic-lysosomal pathway. We will address mitochondrial metabolism modulation as a new promising therapeutic tool for PD.

摘要

线粒体代谢是一种高度协调的现象,其中许多酶系统在各种途径中合作,决定细胞命运。线粒体除了在细胞能量代谢(ATP 产生)中发挥重要作用外,还是调节活性氧物质产生、NAD+/NADH 比例和程序性细胞死亡的强大细胞器。此外,线粒体异常已被公认有助于退行性疾病,如帕金森病(PD)。特别是在线粒体呼吸链复合物 I 缺陷和嵴破坏在 PD 中一直被描述。此外,PD 家族基因的产物,包括α-突触核蛋白、Parkin、PINK1、DJ-1、LRRK2 和 HTR2A,在某些条件下被证明定位于线粒体。似乎 PD 具有线粒体成分,因此调节正常线粒体功能的事件可能会损害神经元的存活。然而,这些途径的改变是否导致 PD 的不同方面,或者它们是否在 PD 发病机制的共同点上汇聚,仍然是一个悬而未决的问题。在这篇综述中,我们将重点关注线粒体代谢的控制及其对沉默调节蛋白激活、微管动力学和自噬溶酶体途径的影响。我们将探讨作为 PD 新的有前途的治疗工具的线粒体代谢调节。

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