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具有裂解蛋白骨架的钠-磷酸盐共转运系统(NaPi-II):对功能和膜插入的影响

The Na+-phosphate cotransport system (NaPi-II) with a cleaved protein backbone: implications on function and membrane insertion.

作者信息

Kohl B, Wagner C A, Huelseweh B, Busch A E, Werner A

机构信息

Max-Planck-Institut fur molekulare Physiologie, Abteilung Epithelphysiologie, Rheinlanddamm 201, 44139 Dortmund, Germany.

出版信息

J Physiol. 1998 Apr 15;508 ( Pt 2)(Pt 2):341-50. doi: 10.1111/j.1469-7793.1998.341bq.x.

Abstract
  1. Renal handling of inorganic phosphate (Pi) involves a Na+-Pi cotransport system which is well conserved between vertebrates. The members of this protein family, denoted NaPi-II, share a topology with, it is thought, eight transmembrane domains. The transporter is proposed to be proteolytically cleaved within a large hydrophilic loop in vivo. 2. The consequences of an interrupted backbone were tested by constructing cDNA clones encoding different N- (1-3 and 1-5) and C-terminal (4-8 and 6-8) complementary fragments of NaPi-II from winter flounder. When the cognate fragments were used in combination (1-3 plus 4-8; 1-5 plus 6-8) they comprised the full complement of the putative transporter domains. 3. None of the four individual fragments or the 1-5 plus 6-8 combination when expressed in Xenopus oocytes increased Pi flux. Coexpression of fragments 1-3 plus 4-8 stimulated transport activity identical to that for expressed wild-type NaPi-II with regard to pH dependency and Km for Na+ and Pi binding; however, the maximal transport rate (vmax) was lower. 4. Immunohistochemistry on cryosections confined the functionally active 1-3 plus 4-8 combination to the oocyte membrane. This was not the case for the 1-5 plus 6-8 combination or any of the individual fragments, all of which failed to induce fluorescence. 5. A second immunohistochemical approach using intact oocytes allowed determination of the extracellular regions of the protein. Epitopes within the loop between transmembrane domains 3 and 4 enhanced fluorescence. Neither N- nor C-terminal tags induced fluorescence.
摘要
  1. 肾脏对无机磷酸盐(Pi)的处理涉及一种Na⁺-Pi共转运系统,该系统在脊椎动物中高度保守。这个蛋白质家族的成员,称为NaPi-II,据认为具有八个跨膜结构域的拓扑结构。有人提出该转运蛋白在体内会在一个大的亲水性环内被蛋白水解切割。2. 通过构建编码来自冬比目鱼的NaPi-II不同N端(1-3和1-5)和C端(4-8和6-8)互补片段的cDNA克隆,测试了主链中断的后果。当同源片段组合使用时(1-3加4-8;1-5加6-8),它们构成了推定转运蛋白结构域的完整互补序列。3. 当在非洲爪蟾卵母细胞中表达时,四个单独的片段或1-5加6-8组合均未增加Pi通量。片段1-3加4-8的共表达刺激了转运活性,在pH依赖性以及对Na⁺和Pi结合的Km方面与表达的野生型NaPi-II相同;然而,最大转运速率(vmax)较低。4. 对冷冻切片的免疫组织化学分析将功能活性的1-3加4-8组合定位在卵母细胞膜上。1-5加6-8组合或任何单个片段则并非如此,它们均未能诱导荧光。5. 使用完整卵母细胞的第二种免疫组织化学方法能够确定该蛋白质的细胞外区域。跨膜结构域3和4之间环内的表位增强了荧光。N端和C端标签均未诱导荧光。

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Renal Na/Pi-cotransporters.
Kidney Int. 1996 Apr;49(4):981-5. doi: 10.1038/ki.1996.139.
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Phosphate deprivation induces overexpression of two proteins related to the rat renal phosphate cotransporter NaPi-2.
Biochim Biophys Acta. 1996 May 22;1281(1):117-23. doi: 10.1016/0005-2736(96)00033-8.

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