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1.
心脏过度负荷是运动性疾病中的常见病和多发病 .许多研究者运用组织学观察和生物化学等多种方法 ,从心肌超微结构、心肌舒缩性能等方面研究心脏过度负荷对心脏产生的损伤 .通过对这些方面进行归纳总结 ,探讨了心脏过度负荷引起心脏损伤的因素及其机制  相似文献   
2.
VDAC(Voltage-dependent anion channel)是位于线粒体外膜上的一种主要通道蛋白,参与线粒体内外物质和能量的运输,在线粒体与细胞其它部位的通讯中起重要调节作用.近年来研究发现,VDAC也是线粒体与其它蛋白质相互作用的功能结合位点,可与多种凋亡调节蛋白(如HK-Ⅰ/Ⅱ、Bcl-2家族蛋白、tubulin、MAP2/4等)以及非蛋白调节因子相互作用,参与调控细胞凋亡.因此,VDAC成为线粒体凋亡通路中一种关键的靶蛋白.本文对近年来VDAC在肿瘤细胞凋亡中的作用机制进行简要综述.  相似文献   
3.
Summary In gerbil adrenal cortex the activity of intramitochondrial NADP-linked isocitric dehydrogenase (IDH) is up to 10-fold greater than the NAD-linked IDH. The NADP-IDH, apparent Km 0.58 mM, Vmax 280 nmoles/min/mg mitochondrial protein, appears to be the major source of reducing equivalents to support adrenal mitochondrial steroid 11B- and 19-hydroxylation in this species.  相似文献   
4.
Lipid transport in microorganisms   总被引:2,自引:0,他引:2  
Summary Microorganisms are useful model systems for the study of intracellular transport of lipids. Eukaryotic microorganisms, such as the yeastSaccharomyces cerevisiae, are similar to higher eukaryotes with respect to organelle structure and membrane assembly. Experiments in vivo showed that transport of phosphatidylcholine between yeast microsomes and mitochondria is energy independent; transfer of phosphatidylinositol to the plasma membrane and the flux of secretory vesicles take place by different mechanisms. Linkage of transfer and biosynthesis of phospholipids was demonstrated in the case of intramitochondrial phospholipid transfer. A yeast phosphatidylinositol/phosphatidylcholine transfer protein, which is essential for cell viability, was isolated and characterized. Another phospholipid transfer protein present in yeast cytosol, which has a different specificity, is currently under investigation. Transfer of phospholipids between cellular membranes was also demonstrated with prokaryotes. The cytoplasm and the periplasma of the gram-negative facultative photosynthetic bacteriumRhodopseudomonas sphaeroides contain phospholipid transfer proteins; these seem to be involved in the biosynthesis of prokaryotic membranes.  相似文献   
5.
Summary Both normetanephrine and metanephrine were found to be oxidized by both types of monoamine oxidase in mouse liver mitochondria. Both Km and Vmax values of type B MAO for both substrates were higher than those of type A MAO, which caused the shift of inhibition curves with clorgyline and deprenyl according to the increase in substrate concentration.  相似文献   
6.
Several vanadium compounds have been known for the hypoglycemic and anticancer effects. However, the mechanisms of the pharmacological and toxicological effects were not clear. In this work, we in- vestigated the potential targets of vanadium in mitochondria. Vanadyl ions were found to bind to mi- tochondria from rat liver with a stoichiometry of 244±58 nmol/mg protein and an apparent dissocia- tion constant (Kd) of (2.0±0.8)×10·16 mol/L. Using size exclusion chromatography, a vanadium-binding protein was isolated and identified to be the 60-kDa heat shock protein (HSP60) by mass spectrometry analysis and immunoassays. Additionally, binding of vanadyl ions was found to result in depolymeri- zation of homo-oligomeric HSP60 (GroEL). HSP60 is an indispensable molecular chaperone and in- volved in many kinds of pathogenesis of inflammatory and autoimmune diseases, e.g. type 1 diabetes. Our results suggested that HSP60 could be a novel important target involved in the biological and/or toxicological effects of vanadium compounds.  相似文献   
7.
During mid-oogenesis of Drosophila, cyto plasmic particles are transported within the nurse cells and through ring canals (cytoplasmic bridges) into the oocyte by means of a microfilament-dependent mecha nism. Video-intensified fluorescence timelapse mi croscopy, in combination with microinjections of antibodies directed against Drosophila 95F myosin, have revealed that this unconventional myosin of class VI is involved in the transport processes. The results indicate that certain cytoplasmic particles in the nurse cells move along microfilaments due to their direct association with myosin VI motors. Additional myosin- VI molecules located at the rim of the ring canals seem to be involved in particle transport into the oocyte. Microinjected mitochondria-specific dyes have revealed that some of these particles are mitochondria. Received 3 April 1997; received after revision 5 May 1997; accepted 27 May 1997  相似文献   
8.
目的研究热敏灸对运动大鼠运动能力和心肌、骨骼肌细胞线粒体过氧化损伤的影响。方法将40只大鼠随机分为正常对照组、单纯运动组、运动+普通悬灸组和运动+热敏灸组,采用14 d递增大强度跑台运动训练和生物化学的方法,观察热敏灸对运动大鼠运动能力和心肌、骨骼肌细胞线粒体过氧化损伤的影响。结果运动+热敏灸组大鼠疲劳相关症状显著改善,跑台力竭时间显著高于运动+普通悬灸组和单纯运动组。运动+热敏灸组大鼠心肌、骨骼肌细胞线粒体SOD酶活性高于单纯运动组、运动+普通悬灸组,心肌细胞线粒体SOD酶活性低于正常对照组,但骨骼肌细胞线粒体SOD酶活性与正常对照组比较,差异无显著性;MDA含量低于单纯运动组和运动+普通悬灸组,但高于正常对照组。结论热敏灸足三里穴具有明显的抗运动性疲劳作用,机理与热敏灸降低过度运动大鼠心肌和骨骼肌细胞线粒体过氧化损伤有关。  相似文献   
9.
Refsum disease is a rare, inherited neurodegenerative disorder characterized by accumulation of the dietary branched-chain fatty acid phytanic acid in plasma and tissues caused by a defect in the alphaoxidation pathway. The accumulation of phytanic acid is believed to be the main pathophysiological cause of the disease. However, the exact mechanism(s) by which phytanic acid exerts its toxicity have not been resolved. In this study, the effect of phytanic acid on mitochondrial respiration was investigated. The results show that in digitonin-permeabilized fibroblasts, phytanic acid decreases ATP synthesis, whereas substrate oxidation per se is not affected. Importantly, studies in intact fibroblasts revealed that phytanic acid decreases both the mitochondrial membrane potential and NAD(P)H autofluorescence. Taken together, the results described here show that unesterified phytanic acid exerts its toxic effect mainly through its protonophoric action, at least in human skin fibroblasts. Received 4 August 2007; received after revision 26 September 2007; accepted 10 October 2007 J. C. Komen, F. Distelmaier: These authors contributed equally to this work.  相似文献   
10.
Summary Oedogonium cardiacum Wittrock, a filamentous green alga, was treated with DMSO. The substance induced active swelling and fragmentation of mitochondria at both 5 and 7.5%. Septa were observed at 7.5% only and were not identical with the fragmentation sites. Thus it is concluded that internal partition by septa is not a prerequisite for mitochondrial fragmentation or division.Acknowledgment. This work was supported by the Österreichische Nationalbank, Jubiläumsfondsprojekt No. 1927.  相似文献   
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