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首页> 外文期刊>The Journal of Physiology >Molecular determinants of cAMP-mediated regulation of the Na+-Ca2+ exchanger expressed in human cell lines.
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Molecular determinants of cAMP-mediated regulation of the Na+-Ca2+ exchanger expressed in human cell lines.

机译:在人类细胞系中表达的cAMP介导的Na + -Ca2 +交换子调节分子决定因素。

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摘要

The cardiac Na+-Ca2+ exchanger (NCX1) is one of the major sarcolemmal Ca2+ transporters of cardiomyocytes. Structure-function studies suggest that beta-adrenergic inhibition of NCX1, as reported for frog, but not mammalian hearts, may be associated with a unique splice variant of frog cardiac NCX1 where insertion of an extra exon completes the coding of a nucleotide binding P-loop. To test the involvement of the P-loop in cAMP-mediated regulation of NCX1 we used four stably transfected human cell lines (a previously established line of baby hamster kidney (BHK) cells and three new lines of human embryonic kidney (HEK) cells) expressing: (1) wild-type dog NCX1 (dog NCX1); (2) wild-type frog NCX1 (frog NCX1); (3) chimeric frog-dog NCX1 incorporating the completed P-loop from the frog NCX1 into the dog NCX1 sequence (frog/dog NCX1); and (4) a mutated frog NCX1 where a putative protein kinase A (PKA) site was disrupted by substitution of a single serine residue with glycine (S374G frog NCX1). Structural expression of these NCX1 constructs was confirmed using Western blot analysis of extracted proteins and immunofluorescence imaging. The NCX1-generated current (INa-Ca) was reliably measured in cells expressing dog (2.0 +/- 0.15 pA pF-1), frog (0.6 +/- 0.1 pA pF-1) and frog/dog (0.6 +/- 0.1 pA pF-1) NCX1, but less so in those expressing S374G frog NCX1 (0.3 +/- 0.1 pA pF-1). Addition of 100 microM 8-bromoadenosine 3',5' cyclic monophosphate (8-Br-cAMP) suppressed INa-Ca of frog and frog/dog NCX1 by 60-80 %. The suppression of INa-Ca was smaller and transient in cells expressing S374G frog NCX1, and absent in cells expressing dog NCX1. Intracellular Ca2+ (Ca2+i)-transients, activated by rapid withdrawal of Na+, were also downregulated in the frog and frog/dog NCX1 and to a smaller and transient extent in S374G frog NCX1. Our findings suggest that the suppressive effect of beta-adrenergic agonists requires the presence of the P-loop domain of the frog NCX1, and provide evidence that the putative PKA site, present in both dog and frog NCX1, might also be critical in the cAMP-mediated regulation of the exchanger.
机译:心脏Na + -Ca2 +交换子(NCX1)是心肌细胞的主要肌膜Ca2 +转运蛋白之一。结构功能研究表明,如对青蛙(而非哺乳动物心脏)报道的那样,β-肾上腺素能抑制NCX1可能与青蛙心脏NCX1的独特剪接变体有关,其中插入额外的外显子完成了核苷酸结合P-的编码循环。为了测试P环在cAMP介导的NCX1调控中的参与,我们使用了四种稳定转染的人类细胞系(先前建立的仓鼠肾(BHK)细胞系和人类胚胎肾(HEK)细胞三系)表达:(1)野生型犬NCX1(犬NCX1); (2)野生型青蛙NCX1(青蛙NCX1); (3)嵌合青蛙-狗NCX1,其将来自青蛙NCX1的完整的P-环并入狗NCX1序列(青蛙/狗NCX1); (4)突变的青蛙NCX1,其中假定的蛋白激酶A(PKA)位点通过用甘氨酸取代单个丝氨酸残基而被破坏(S374G青蛙NCX1)。使用提取蛋白的蛋白质印迹分析和免疫荧光成像确认了这些NCX1构建体的结构表达。在表达狗(2.0 +/- 0.15 pA pF-1),青蛙(0.6 +/- 0.1 pA pF-1)和青蛙/狗(0.6 +/-)的细胞中可以可靠地测量NCX1产生的电流(INa-Ca) 0.1 pA pF-1)NCX1,但表达S374G青蛙NCX1(0.3 +/- 0.1 pA pF-1)的NCX1较少。添加100 microM 8-溴腺苷3',5'环状单磷酸酯(8-Br-cAMP)可将青蛙和青蛙/狗NCX1的INa-Ca抑制60-80%。在表达S374G青蛙NCX1的细胞中,INa-Ca的抑制作用较小且短暂,而在表达狗NCX1的细胞中则不存在。通过快速撤离Na +激活的细胞内Ca2 +(Ca2 + i)瞬态在青蛙和青蛙/狗NCX1中也下调,而在S374G青蛙NCX1中则较小且短暂。我们的发现表明,β-肾上腺素能激动剂的抑制作用需要青蛙NCX1的P环域存在,并提供证据表明存在于狗和青蛙NCX1中的推定PKA位点在cAMP中也可能至关重要介导的交换器调节。

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