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Correlation of Structure and Function in the Scallop Sarcoplasmic Reticulum

Correlation of Structure and Function in the Scallop Sarcoplasmic Reticulum
扇贝肌浆网结构与功能的相关性
批准号:
8819439
负责人:
Peter Hardwicke
金额:
$24.38万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1989
资助国家:
美国
项目状态:
已结题
起止时间:
1989-09-01 至 1994-08-31

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中文摘要
翻译
许多细胞过程,包括运动,都是由细胞内的钙离子浓度控制的。 在肌肉细胞中,用于调节收缩状态的钙离子储存在膜状储库(肌浆网)内。 SR 中钙的释放导致细胞收缩; SR 内钙的重新吸收导致松弛。 钙的吸收是由于钙 ATP 酶将钙离子泵过膜。 在泵送过程中,酶经过两种涉及蛋白质磷酸化的中间形式。 该实验室对钙泵的功能很感兴趣,并一直采用扇贝肌肉中的 SR 制剂作为模型系统,扇贝肌肉具有独特的钙 ATP 酶旁晶排列,这使得电子显微镜衍射分析和其他生物物理方法成为可能。 该实验室最近发现,在扇贝肌SR中,两种中间形式在SR膜中表现出不同的晶体排列。 这一发现的含义之一是酶分子可能在泵送循环期间在膜中旋转。 实验室还发现,扇贝SR的脂质成分与钙泵研究常用生物材料兔肌肉SR有显着不同。 我们将进一步开发这种独特的模型系统。 钙跨膜转运在所有细胞中具有普遍的生理重要性,这项工作的结果将与细胞生物学和有机生理学的许多方面相关。
英文摘要
Many cellular processes, including motility, are controlled by the calcium ion concentration within the cell. In muscle cells, the calcium ions used to regulate the state of contraction are stored within a membranous reservoir, the sarcoplasmic reticulum. Release of calcium from the SR results in cellular contraction; resequestration of the calcium within the SR results in relaxation. The uptake of calcium is due to a calcium ATPase which pumps calcium ions across the membrane. During pumping, the enzyme passes through two intermediate forms which involve phosphorylation of the protein. This laboratory is interested in how this calcium pump functions, and has been employing as a model system a preparation of SR from scallop muscle, which has a uniquely paracrystalline arrangement of the calcium ATPase which makes possible electron microscopic diffraction analysis and other biophysical approaches. This laboratory has recently found that, in scallop muscle SR, the two intermediate forms show a different crystalline arrangement in the SR membrane. One of the implications of this finding is that the enzyme molecules may rotate in the membrane during the pumping cycle. The laboratory has also found that the lipid composition of the scallop SR is strikingly different from rabbit muscle SR, which is the common biological material for studies of the calcium pump. Further exploitation of this unique model system will be pursued. Transport of calcium across membranes is of universal physiological importance in all cells, and results from this work will have relevance to many aspects of cell biology and organismal physiology.
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Correlation of Structure and Function in the Scallop Sarcoplasmic Reticulum
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