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利钠肽C型受体清除功能的分子决定因素。

Molecular determinants of the clearance function of type C receptors of natriuretic peptides.

作者信息

Cohen D, Koh G Y, Nikonova L N, Porter J G, Maack T

机构信息

Department of Physiology, Cornell University Medical College, New York, New York 10021, USA.

出版信息

J Biol Chem. 1996 Apr 19;271(16):9863-9. doi: 10.1074/jbc.271.16.9863.

Abstract

Receptor-mediated endocytosis is the cellular mechanism by which type C receptors of natriuretic peptides exert their clearance function. In the present work, performed in recombinant Chinese hamster ovary cells stably transfected with wild type or mutated human kidney C receptors, we determined net endocytic rates (ER) of C receptor-ligand complexes, lysosomal hydrolysis of ligand (125I-labeled native atrial natriuretic factor, ANF1-28), and receptor recycling. Equilibrium ligand binding, immunocytochemistry, and immunoprecipitation were performed to characterize the transfected receptors. The net ER of recombinant wild type C receptors was approximately 6% of occupied receptors internalized per min, and C receptor-mediated lysosomal hydrolysis of ligand amounted to approximately 250% of specifically bound 125I-ANF1-28/h, with efficient recycling of internalized C receptors to the cell surface. Hypertonic sucrose reduced net ER and lysosomal hydrolysis of 125I-ANF1-28 more than 10-fold, indicating that endocytosis occurred via clathrin-coated pits. Total deletion of the cytoplasmic domain also reduced net ER and lysosomal hydrolysis of 125I-ANF1-28 by almost 10-fold, whereas deletion of the terminal 28 amino acids of the cytoplasmic tail led to a 4-fold reduction in these parameters. Replacement of cytoplasmic domain Tyr508 by Ala, or Tyr508 and Phe538 by Ala, reduced net endocytosis and lysosomal hydrolysis of 125I-ANF1-28 by 40-50%. Replacement of extracellular domain Cys473 by Ala impeded the constitutive formation of homodimers and reduced by approximately 50% the net ER and lysosomal hydrolysis of 125I-ANF1-28. These results demonstrate that the cytoplasmic domain of C receptors, Tyr508 within this domain, and constitutive receptor dimerization are the major molecular determinants of the clearance function of C receptors.

摘要

受体介导的内吞作用是利钠肽C型受体发挥其清除功能的细胞机制。在本研究中,我们使用稳定转染野生型或突变型人肾C受体的重组中国仓鼠卵巢细胞,测定了C受体 - 配体复合物的净内吞率(ER)、配体(125I标记的天然心房利钠因子,ANF1 - 28)的溶酶体水解以及受体再循环。进行平衡配体结合、免疫细胞化学和免疫沉淀以表征转染的受体。重组野生型C受体的净ER约为每分钟内化的被占据受体的6%,C受体介导的配体溶酶体水解量约为每小时特异性结合的125I - ANF1 - 28的250%,内化的C受体有效地再循环到细胞表面。高渗蔗糖使125I - ANF1 - 28的净ER和溶酶体水解降低超过10倍,表明内吞作用通过网格蛋白包被小窝发生。细胞质结构域的完全缺失也使125I - ANF1 - 28的净ER和溶酶体水解降低近10倍,而细胞质尾巴末端28个氨基酸的缺失导致这些参数降低4倍。将细胞质结构域的Tyr508替换为Ala,或将Tyr508和Phe538替换为Ala,使125I - ANF1 - 28的净内吞作用和溶酶体水解降低40 - 50%。将细胞外结构域的Cys473替换为Ala阻碍了同源二聚体的组成型形成,并使125I - ANF1 - 28的净ER和溶酶体水解降低约50%。这些结果表明,C受体的细胞质结构域、该结构域内的Tyr508以及组成型受体二聚化是C受体清除功能的主要分子决定因素。

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