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从大鼠肾皮质分离的刷状缘膜中存在内在的碳酸氢盐刺激的Mg2 + -ATP酶的进一步证据。

Further evidence for the existence of an intrinsic bicarbonate-stimulated Mg2+-ATPase in brush border membranes isolated from rat kidney cortex.

作者信息

Kinne-Saffran E, Kinne R

出版信息

J Membr Biol. 1979 Sep;49(3):235-51. doi: 10.1007/BF01871120.

Abstract

The aim of this study was to provide further evidence for the existence of a nonmitochondrial becarbonate-stimulated Mg2+-ATPase in brush border membranes derived from rat kidney cortex. A plasma membrane fraction rich in brush border microvilli and a mitochondrial fraction were isolated by differential centrifugation. Both fractions contain a Mg2+-ATPase activity which can be stimulated by bicarbonate. The two Mg2+-ATPases are stimulated likewise by chloride, bicarbonate, and sulfite or inhibited by oligomycin and aurovertin, though to different degrees. In contrast to these similarities, only the Mg2+-ATPase activity of the mitochondrial fraction is inhibited by atractyloside, a substance which blocks an adenine nucleotide translocator in the inner mitochondrial membrane. On the other hand, filipin, an antibiotic that complexes with cholesterol in the membranes inhibits exclusively the Mg2+-ATPase of the cholesterol-rich brush border membranes. Furthermore it could be demonstrated by the use of bromotetramisole, an inhibitor of alkaline phosphatase activity, that the Mg2+-ATPase activity in the membrane fraction is not due to the presence of the highly active alkaline phosphatase in these membranes. These results support the assumption that an intrinsic bicarbonate-stimulated Mg2+-ATPase is present in rat kidney brush border membranes.

摘要

本研究的目的是为大鼠肾皮质刷状缘膜中存在非线粒体的碳酸氢盐刺激的Mg2 + -ATP酶提供进一步证据。通过差速离心分离出富含刷状缘微绒毛的质膜部分和线粒体部分。两个部分都含有可被碳酸氢盐刺激的Mg2 + -ATP酶活性。两种Mg2 + -ATP酶同样受到氯离子、碳酸氢盐和亚硫酸盐的刺激,或被寡霉素和金轮霉素抑制,尽管程度不同。与这些相似之处相反,只有线粒体部分的Mg2 + -ATP酶活性受到苍术苷的抑制,苍术苷是一种阻断线粒体内膜中腺嘌呤核苷酸转运体的物质。另一方面,制霉菌素是一种与膜中的胆固醇结合的抗生素,它只抑制富含胆固醇的刷状缘膜的Mg2 + -ATP酶。此外,通过使用碱性磷酸酶活性抑制剂溴四咪唑可以证明,膜部分中的Mg2 + -ATP酶活性不是由于这些膜中存在高活性碱性磷酸酶。这些结果支持了大鼠肾刷状缘膜中存在内在的碳酸氢盐刺激的Mg2 + -ATP酶这一假设。

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