Ruknudin A, Valdivia C, Kofuji P, Lederer W J, Schulze D H
Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, Maryland, USA.
Am J Physiol. 1997 Jul;273(1 Pt 1):C257-65. doi: 10.1152/ajpcell.1997.273.1.C257.
cDNAs for the Na+/Ca2+ exchanger from Drosophila melanogaster (Dmel/Nck) have been cloned by homology screening using the human heart Na+/Ca2+ exchanger cDNA. The overall deduced protein structure for Dmel/Nck is similar to that of mammalian Na+/Ca2+ exchanger genes NCX1 and NCX2, having six hydrophobic regions in the amino terminus separated from six at the carboxy-terminal end by a large intracellular loop. Sequence comparison of the Drosophila exchanger cDNAs with NCX1 and NCX2 Na+/Ca2+ exchangers are approximately 46% identical at the deduced amino acid level. Consensus phosphorylation sites for both protein kinase C and protein kinase A are present on the intracellular loop region of the Dmel/Nck. Alternative splicing for the Dmel/Nck gene is suggested in the same intracellular loop region as demonstrated for NCX1. Functionally, the Drosophila Na+/ Ca2+ exchanger expressed in oocytes differs from expressed mammalian NCX1 with regard to Ca2+ transport in Ca2+/ Ca2+ exchange and the effect of monovalent-dependent Ca2+/ Ca2+ exchange. The Dmel/Nck gene maps to chromosome 3 (93A-B) using in situ hybridization to polytene chromosomes, the same position as the Na(+)-K(+)-ATPase, a related transporter. We conclude that, although extracellular Na+ concentration-dependent Ca2+ transport is subserved by both human and Drosophila Na+/Ca2+ exchangers, there are clear and important differences in the transporters, which should be useful in deducing how the Na+/Ca2+ exchanger protein function depends on its structure.
利用人类心脏钠钙交换体cDNA通过同源性筛选克隆出了黑腹果蝇钠钙交换体(Dmel/Nck)的cDNA。Dmel/Nck推导的整体蛋白质结构与哺乳动物钠钙交换体基因NCX1和NCX2的结构相似,在氨基末端有六个疏水区域,与羧基末端的六个疏水区域被一个大的细胞内环隔开。果蝇交换体cDNA与NCX1和NCX2钠钙交换体在推导的氨基酸水平上约有46%的同一性。蛋白激酶C和蛋白激酶A的共有磷酸化位点存在于Dmel/Nck的细胞内环区域。正如NCX1所显示的那样,Dmel/Nck基因在同一细胞内环区域存在选择性剪接。在功能上,卵母细胞中表达的果蝇钠钙交换体在钙交换中的钙转运以及单价依赖性钙交换的作用方面与表达的哺乳动物NCX1不同。利用多线染色体原位杂交技术,Dmel/Nck基因定位于3号染色体(93A - B),与相关转运体钠钾ATP酶位于同一位置。我们得出结论,虽然人类和果蝇的钠钙交换体都参与细胞外钠浓度依赖性钙转运,但这些转运体存在明显且重要的差异,这对于推断钠钙交换体蛋白功能如何依赖于其结构应该是有用的。