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MgATP和磷酸精氨酸对鱿鱼神经Na+/Ca2+交换体上调的一些生化特性

Some biochemical properties of the upregulation of the squid nerve Na+/Ca2+ exchanger by MgATP and phosphoarginine.

作者信息

Berberián Graciela, DiPolo Reinaldo, Beaugé Luis

机构信息

Laboratorio de Biofísica, Instituto de Investigación Médica Mercedes y Martín Ferreyra (INIMEC-CONICET), Casilla de Correo 389, 5000 Córdoba, Argentina.

出版信息

Ann N Y Acad Sci. 2007 Mar;1099:152-65. doi: 10.1196/annals.1387.009.

Abstract

In squid nerve MgATP upregulation of Na+/Ca2+ exchange requires a soluble cytosolic regulatory protein (SCRP) of about 13 kDa; phosphoarginine (PA) stimulation does not. MgATP-gamma-S mimics MgATP. When a 30-10-kDa cytosolic fraction is exposed to 0.5 mM [32P]ATP in the same solution used for transport assays, and in the presence of native membrane vesicles, a 13-kDa and a 25-kDa band become phosphorylated. Membrane vesicles alone do not show these phosphorylated bands and heat denaturation of the cytosolic fraction prevents phosphorylation. Moreover, staurosporine, a general inhibitor of kinases, does not affect MgATP + SCRP stimulation of the exchanger or the phosphorylation of the 13 kDa but prevents phosphorylation of the 25-kDa cytosolic band. The 30-10-kDa fraction phosphorylated in the presence of staurosporine stimulates Na+/Ca2+ exchange in vesicles in the absence of ATP but with Mg2+ in the medium. The 30-10-kDa fraction is not phosphorylated by PA. In membrane vesicles two protein bands, at about 60 kDa and 70 kDa identified as the low molecular weight neurofilament (NF), are phosphorylated by PA, but not by MgATP. This phosphorylation is specific for PA, insensitive to staurosporine (similar to the PA-stimulated fluxes), and labile. In addition, co-immunoprecipitation was observed between the NF and the exchanger protein. Under the conditions of these experiments no phosphorylation of the exchanger is detected, either with MgATP or PA.

摘要

在鱿鱼神经中,MgATP对Na⁺/Ca²⁺交换的上调需要一种约13 kDa的可溶性胞质调节蛋白(SCRP);磷酸精氨酸(PA)刺激则不需要。MgATP-γ-S可模拟MgATP。当将30 - 10 kDa的胞质组分在用于转运测定的相同溶液中,在天然膜泡存在的情况下暴露于0.5 mM [³²P]ATP时,一条13 kDa和一条25 kDa的条带会发生磷酸化。单独的膜泡不会显示这些磷酸化条带,且胞质组分的热变性会阻止磷酸化。此外,激酶的通用抑制剂星形孢菌素不影响MgATP + SCRP对交换体的刺激或13 kDa蛋白的磷酸化,但会阻止25 kDa胞质条带的磷酸化。在星形孢菌素存在下磷酸化的30 - 10 kDa组分在无ATP但培养基中有Mg²⁺的情况下能刺激膜泡中的Na⁺/Ca²⁺交换。30 - 10 kDa组分不会被PA磷酸化。在膜泡中,两条约60 kDa和70 kDa的蛋白条带被鉴定为低分子量神经丝(NF),它们会被PA磷酸化,但不会被MgATP磷酸化。这种磷酸化对PA具有特异性,对星形孢菌素不敏感(类似于PA刺激的通量),且不稳定。此外,在NF和交换体蛋白之间观察到了共免疫沉淀。在这些实验条件下,无论是用MgATP还是PA,都未检测到交换体的磷酸化。

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