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淋巴细胞线粒体的分离及其对外线粒体游离钙离子浓度的调节。

The isolation of lymphocyte mitochondria and their regulation of extramitochondrial free Ca2+ concentration.

作者信息

Dippenaar N G, Brand M D

出版信息

Biochem J. 1982 Mar 15;202(3):731-7. doi: 10.1042/bj2020731.

Abstract
  1. A method for the isolation of functionally intact mitochondria from lymphocytes is described. It involves digitonin breakage of the plasma membrane, followed by differential centrifugation. The yield was 36 mg of mitochondrial protein/200 g of pig mesenteric lymph node (6 mg of mitochondrial protein/10(9) lymphocytes). The mitochondrial had a respiratory-control ratio of 2--3.5 with succinate as substrate. 2. Ca2+ transport by these mitochondria was investigated. They were able to regulate the extramitochondrial free [Ca2+] very precisely, by buffering any displacements from the steady-state. The exact extramitochondrial free [Ca2+] of this steady-state depended on the conditions of incubation. In a medium designed to resemble the cytoplasmic environment, with added Ca2+, lymphocyte mitochondria maintained a steady-state free [Ca2+] of 0.63 microM (pCa of 6.2). The rates of Ca2+ uptake and efflux under these conditions, with both lymphocyte and liver mitochondria, were very much lower than those in a less complex medium. 3. Lymphocyte mitochondria were shown to possess an Na+-independent Ruthenium Red-insensitive efflux pathway similar to that of liver mitochondria. Ruthenium Red totally inhibited the electrophoretic uniporter. Although Na+ had no effect on the steady-state maintained by lymphocyte mitochondria, they were shown to possess an Na+/H+ antiporter.
摘要
  1. 本文描述了一种从淋巴细胞中分离功能完整线粒体的方法。该方法包括用洋地黄皂苷破坏质膜,然后进行差速离心。产量为36mg线粒体蛋白/200g猪肠系膜淋巴结(6mg线粒体蛋白/10⁹个淋巴细胞)。以琥珀酸为底物时,这些线粒体的呼吸控制率为2 - 3.5。2. 对这些线粒体的Ca²⁺转运进行了研究。它们能够通过缓冲任何偏离稳态的变化,非常精确地调节线粒体外游离[Ca²⁺]。这个稳态的确切线粒体外游离[Ca²⁺]取决于孵育条件。在一种旨在模拟细胞质环境并添加了Ca²⁺的培养基中,淋巴细胞线粒体维持的稳态游离[Ca²⁺]为0.63μM(pCa为6.2)。在这些条件下,淋巴细胞和肝脏线粒体的Ca²⁺摄取和外流速率都远低于在较简单培养基中的速率。3. 已证明淋巴细胞线粒体拥有一条与肝脏线粒体类似的不依赖Na⁺且对钌红不敏感的外流途径。钌红完全抑制了电渗单向转运体。虽然Na⁺对淋巴细胞线粒体维持的稳态没有影响,但已证明它们拥有一个Na⁺/H⁺反向转运体。

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The role of calcium in the regulation of mitochondrial metabolism.
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