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1
Biochemical and ultrastructural aspects of Ca2+ transport by mitochondria of the hepatopancreas of the blue crab Callinectes sapidus.蓝蟹(Callinectes sapidus)肝胰腺线粒体对Ca2+转运的生化及超微结构研究
J Cell Biol. 1974 May;61(2):301-15. doi: 10.1083/jcb.61.2.301.
2
Calcium phosphate granules in the hepatopancreas of the blue crab Callinectes sapidus.蓝蟹(Callinectes sapidus)肝胰腺中的磷酸钙颗粒。
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3
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Comparative studies of intra- and extramitochondrial calcium phosphates from the hepatopancreas of the blue crab (Callinectes sapidus).蓝蟹(Callinectes sapidus)肝胰腺线粒体内外磷酸钙的比较研究。
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Inhibition of Ca++-stimulated respiration by uncouplers.解偶联剂对钙离子刺激呼吸的抑制作用。
Acta Biol Med Ger. 1975;34(11-12):1713-21.

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Calcium phosphate granules in the hepatopancreas of the blue crab Callinectes sapidus.蓝蟹(Callinectes sapidus)肝胰腺中的磷酸钙颗粒。
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8
Calcium localization in the shell-forming tissue of the freshwater snail, Biomphalaria glabrata: a comparative study of various methods for localizing calcium.淡水螺类光滑双脐螺贝壳形成组织中的钙定位:多种钙定位方法的比较研究
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Comparative studies of intra- and extramitochondrial calcium phosphates from the hepatopancreas of the blue crab (Callinectes sapidus).蓝蟹(Callinectes sapidus)肝胰腺线粒体内外磷酸钙的比较研究。
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Mitochondrial Structure: Two Types of Subunits on Negatively Stained Mitochondrial Membranes.线粒体结构:负染线粒体膜上的两种亚基类型。
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STOICHIOMETRY OF RESPIRATORY STIMULATION, ACCUMULATION OF CA++ AND PHOSPHATE, AND OXIDATIVE PHOSPHORYLATION IN RAT LIVER MITOCHONDRIA.大鼠肝线粒体呼吸刺激的化学计量学、Ca++和磷酸盐的积累以及氧化磷酸化
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STOICHIOMETRIC RELATIONSHIPS BETWEEN ACCUMULATION OF IONS BY MITOCHONDRIA AND THE ENERGY-COUPLING SITES IN THE RESPIRATORY CHAIN.线粒体对离子的积累与呼吸链中能量偶联位点之间的化学计量关系。
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Ca ion uptake by rat kidney mitochondria and its dependence on respiration and phosphorylation.大鼠肾线粒体对钙离子的摄取及其对呼吸作用和磷酸化作用的依赖性。
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蓝蟹(Callinectes sapidus)肝胰腺线粒体对Ca2+转运的生化及超微结构研究

Biochemical and ultrastructural aspects of Ca2+ transport by mitochondria of the hepatopancreas of the blue crab Callinectes sapidus.

作者信息

Chen C H, Greenawalt J W, Lehninger A L

出版信息

J Cell Biol. 1974 May;61(2):301-15. doi: 10.1083/jcb.61.2.301.

DOI:10.1083/jcb.61.2.301
PMID:4827906
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2109283/
Abstract

Mitochondria isolated from the hepatopancreas of the blue crab Callinectes sapidus show up to 12-fold stimulation of respiration on addition of Ca(2+), which is accompanied by Ca(2+) accumulation (Ca(2+):site = 1.9) and H(+) ejection (H(+):Ca(2+) = 0.85). Sr(2+) and Mn(2+) are also accumulated; Mg(2+) is not. A strongly hypertonic medium (383 mosM), Mg(2+), and phosphate are required for maximal Ca(2+) uptake. Ca(2+) uptake takes precedence over oxidative phosphorylation of ADP for respiratory energy. Once Ca(2+) is accumulated by the crab mitochondria, it is stable and only very slowly released, even by uncoupling agents. ATP hydrolysis also supports Ca(2+) uptake. Respiration-inhibited crab hepatopancreas mitochondria show both high-affinity and low-affinity Ca(2+)-binding sites, which are inactive in the presence of uncoupling agents. Crab hepatopancreas mitochondria have an enormous capacity for accumulation of Ca(2+), up to 5,500 ng-atoms Ca(2+) per mg protein, with an equivalent amount of phosphate. Freshly isolated mitochondria contain very large amounts of Ca(2+), Mg(2+), phosphate, K(+), and Na(+); their high Ca(2+) content is a reflection of the vary large amount of extra-mitochondrial Ca(2+) in the whole tissue. Electron microscopy of crab mitochondria loaded with Ca(2+) and phosphate showed large electron-dense deposits, presumably of precipitated calcium phosphate. They consisted of bundles of needle-like crystals, whereas Ca(2+)-loaded rat liver mitochondria show only amorphous deposits of calcium phosphate under similar conditions. The very pronounced capacity of crab hepatopancreas mitochondria for transport of Ca(2+) appears to be adapted to a role in the storage and release of Ca(2+) during the molting cycle of this crustacean.

摘要

从蓝蟹(Callinectes sapidus)肝胰腺中分离出的线粒体,在添加Ca(2+)后呼吸作用增强了12倍,同时伴有Ca(2+)积累(Ca(2+):位点 = 1.9)和H(+)排出(H(+):Ca(2+) = 0.85)。Sr(2+)和Mn(2+)也会积累;Mg(2+)则不会。最大程度的Ca(2+)摄取需要强高渗介质(383 mosM)、Mg(2+)和磷酸盐。Ca(2+)摄取优先于ADP的氧化磷酸化以获取呼吸能量。一旦Ca(2+)被蟹线粒体积累,它就很稳定,即使使用解偶联剂也释放得非常缓慢。ATP水解也支持Ca(2+)摄取。呼吸受抑制的蟹肝胰腺线粒体显示出高亲和力和低亲和力的Ca(2+)结合位点,在解偶联剂存在时这些位点无活性。蟹肝胰腺线粒体具有巨大的Ca(2+)积累能力,每毫克蛋白质可达5500纳摩尔Ca(2+),同时伴有等量的磷酸盐。刚分离的线粒体含有大量的Ca(2+)、Mg(2+)、磷酸盐、K(+)和Na(+);其高Ca(2+)含量反映了整个组织中线粒体外Ca(2+)的大量存在。对加载了Ca(2+)和磷酸盐的蟹线粒体进行电子显微镜观察,发现有大量电子致密沉积物,推测为磷酸钙沉淀。它们由针状晶体束组成,而在类似条件下加载Ca(2+)的大鼠肝线粒体仅显示出无定形的磷酸钙沉积物。蟹肝胰腺线粒体对Ca(2+)的运输能力非常显著,这似乎适应了该甲壳类动物蜕皮周期中Ca(2+)的储存和释放作用。