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大鼠小脑线粒体酶的定量细胞化学图谱分析

Quantitative cytochemical mapping of mitochondrial enzymes in rat cerebella.

作者信息

Bertoni-Freddari C, Fattoretti P, Casoli T, Di Stefano G, Solazzi M, Meier-Ruge W

机构信息

Neurobiology of Aging Laboratory, N. Masera INRCA Research Department, Via Birarelli 8, 60121 Ancona, Italy.

出版信息

Micron. 2001 Jun;32(4):405-10. doi: 10.1016/s0968-4328(00)00015-9.

Abstract

Mitochondrial metabolic competence, defined as the organelle's capacity to provide adequate amounts of ATP in due time, appears to constitute an important determinant in several biological processes and pathological conditions. Thus, the assessment of the metabolic efficiency of the mitochondrial population in a given tissue area or cellular compartment may provide clues to identifying alterations of the cellular bioenergetic machinery, which may constitute a predisposing condition leading to impaired organ and system functions. In the cerebellar cortex of adult rats, the activities of the enzymes cytochrome oxidase (COX) and succinic dehydrogenase (SDH) were, respectively, evidenced by means of the diaminobenzidine and copper ferrocyanide preferential cytochemical techniques. At the electron microscope, the activities of these two key molecules of the respiratory chain were clearly visualised as dark precipitates at the inner mitochondrial membrane sites where COX and SDH are located. By means of the disector method, unbiased mitochondrial samplings were carried out to measure: the number of mitochondria/microm(3) of tissue (numeric density: Nv); the mitochondrial volume fraction/microm(3) of tissue (volume density: Vv) and the average mitochondrial volume (V) both on COX- and SDH-positive organelles in the cerebellar glomeruli and Purkinje cells, respectively. The ratio R (total area of the precipitates due either to COX or SDH activity within the single mitochondrion/area of the same organelle) was also evaluated to get information on the enzyme activity related to mitochondrial size.The documented accumulation of mutant mitochondrial DNA particularly in postmitotic cells results in a marked heteroplasmy (mixtures of normal and mutated genomes) at mitochondrial and cellular levels, thus the cellular potential for energy production is demanded to a mosaic of organelles with different functional capabilities. Assessment of the mitochondrial mosaic outline by means of quantitative cytochemistry of key enzymes of the respiratory chain, such as COX and SDH, may allow for the morphofunctional metabolic mapping of mitochondrial efficiency in discrete cellular or tissue compartments.

摘要

线粒体代谢能力被定义为细胞器在适当时间提供足够量ATP的能力,它似乎是几个生物学过程和病理状况中的一个重要决定因素。因此,评估给定组织区域或细胞区室中线粒体群体的代谢效率,可能为识别细胞生物能量机制的改变提供线索,而这种改变可能是导致器官和系统功能受损的一个 predisposing 条件。在成年大鼠的小脑皮质中,分别通过二氨基联苯胺和亚铁氰化铜优先细胞化学技术证实了细胞色素氧化酶(COX)和琥珀酸脱氢酶(SDH)的活性。在电子显微镜下,呼吸链的这两个关键分子的活性在COX和SDH所在的线粒体内膜部位清晰地显现为深色沉淀物。通过分割法,对小脑小球和浦肯野细胞中COX和SDH阳性细胞器分别进行无偏线粒体采样,以测量:每立方微米组织中线粒体的数量(数字密度:Nv);每立方微米组织中线粒体的体积分数(体积密度:Vv)以及平均线粒体体积(V)。还评估了比率R(单个线粒体内因COX或SDH活性导致的沉淀物总面积/同一细胞器的面积),以获取与线粒体大小相关的酶活性信息。已记录到突变线粒体DNA尤其在有丝分裂后细胞中的积累,导致线粒体和细胞水平出现明显的异质性(正常和突变基因组的混合物),因此能量产生的细胞潜力取决于具有不同功能能力的细胞器镶嵌体。通过对呼吸链关键酶如COX和SDH进行定量细胞化学评估线粒体镶嵌体轮廓,可能有助于对离散细胞或组织区室中线粒体效率进行形态功能代谢映射。

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