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遗传性肌病仓鼠UM-X7.1品系营养不良性骨骼肌中的膜系统缺陷

Defective membrane systems in dystrophic skeletal muscle of the UM-X7.1 strain of genetically myopathic hamster.

作者信息

Dhalla N S, Singh A, Lee S L, Anand M B, Bernatsky A M, Jasmin G

出版信息

Clin Sci Mol Med. 1975 Oct;49(4):359-68. doi: 10.1042/cs0490359.

Abstract
  1. The function of mitochondria, sarcotubular membranes (heavy microsomes), sarcolemma and myofibrils from the hind-leg skeletal muscle of about 60- and 150-day-old normal and myopathic (UM-X7.1) hamsters was examined. 2. The mitochondrial calcium uptake as well as mitochondrial phosphorylation and respiratory rates were lower in 60-day-old myopathic skeletal muscle, unlike 150-day-old myopathic animals, when pyruvate-malate and glutamate-malate were used as substrates. However, mitochondria from 150-day-old myopathic animals showed depressed glutamate-dependent respiratory and phosphorylation rates and succinate-supported initial rate of calcium uptake. 3. The microsomal calcium-uptake, but not calcium-binding, and Ca2+-stimulated adenosine triphosphatase (ATPase) activity of the 150-day-old myopathic skeletal muscle were lower than the control values. Although microsomal calcium-binding, calcium-uptake and ATPase activities of the 60-day-old myopathic muscle were not depressed significantly, the initial rate of calcium uptake was less than the control. 4. The sarcolemmal Ca2+-ATPase, but not Mg2+-ATPase or Na+ +K+-ATPase, activity was higher in 60-day-old myopathic muscle whereas the activities of all these enzymes from 150-day-old myopathic animals were higher than the control. On the other hand, the Na+ +K+-ATPase activities from 60- and 150-day-old myopathic animals were inhibited by ouabain to a lesser extent in comparison with the respective control values. 5. The myofibrillar Ca2+-ATPase and Mg2+-ATPase activities as well as inhibition of Mg2+-ATPase due to Na+ and K+ in myopathic muscle were no different from the control values. 6. The results reported here give further support to the view that different membrane systems of the dystrophic muscle are defective.
摘要
  1. 对约60日龄和150日龄正常及患肌病(UM-X7.1)仓鼠后肢骨骼肌的线粒体、肌管膜(重微粒体)、肌膜和肌原纤维的功能进行了检测。2. 当使用丙酮酸 - 苹果酸和谷氨酸 - 苹果酸作为底物时,60日龄患肌病的骨骼肌中线粒体钙摄取以及线粒体磷酸化和呼吸速率较低,这与150日龄患肌病的动物不同。然而,150日龄患肌病动物的线粒体显示出谷氨酸依赖性呼吸和磷酸化速率降低以及琥珀酸支持的钙摄取初始速率降低。3. 150日龄患肌病的骨骼肌微粒体钙摄取(而非钙结合)以及Ca2 + 刺激的腺苷三磷酸酶(ATP酶)活性低于对照值。虽然60日龄患肌病肌肉的微粒体钙结合、钙摄取和ATP酶活性没有显著降低,但钙摄取的初始速率低于对照。4. 60日龄患肌病肌肉中肌膜Ca2 + -ATP酶活性(而非Mg2 + -ATP酶或Na + +K + -ATP酶活性)较高,而150日龄患肌病动物的所有这些酶的活性均高于对照。另一方面,与各自的对照值相比,60日龄和150日龄患肌病动物的Na + +K + -ATP酶活性受哇巴因抑制的程度较小。5. 患肌病肌肉中肌原纤维Ca2 + -ATP酶和Mg2 + -ATP酶活性以及Na + 和K + 对Mg2 + -ATP酶的抑制与对照值无差异。6. 此处报道的结果进一步支持了营养不良性肌肉的不同膜系统存在缺陷这一观点。

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