首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Sulfate transporters involved in sulfate secretion in the kidney are localized in the renal proximal tubule II of the elephant fish (Callorhinchus milii)
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Sulfate transporters involved in sulfate secretion in the kidney are localized in the renal proximal tubule II of the elephant fish (Callorhinchus milii)

机译:涉及肾脏硫酸盐分泌的硫酸盐转运蛋白位于象鱼(Callorhinchus milii)的肾脏近端小管II中。

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摘要

Most vertebrates, including cartilaginous fishes, maintain their plasma SO42− concentration ([SO42−]) within a narrow range of 0.2–1 mM. As seawater has a [SO42−] about 40 times higher than that of the plasma, SO42− excretion is the major role of kidneys in marine teleost fishes. It has been suggested that cartilaginous fishes also excrete excess SO42− via the kidney. However, little is known about the underlying mechanisms for SO42− transport in cartilaginous fish, largely due to the extraordinarily elaborate four-loop configuration of the nephron, which consists of at least 10 morphologically distinguishable segments. In the present study, we determined cDNA sequences from the kidney of holocephalan elephant fish (Callorhinchus milii) that encoded solute carrier family 26 member 1 (Slc26a1) and member 6 (Slc26a6), which are SO42− transporters that are expressed in mammalian and teleost kidneys. Elephant fish Slc26a1 (cmSlc26a1) and cmSlc26a6 mRNAs were coexpressed in the proximal II (PII) segment of the nephron, which comprises the second loop in the sinus zone. Functional analyses using Xenopus oocytes and the results of immunohistochemistry revealed that cmSlc26a1 is a basolaterally located electroneutral SO42− transporter, while cmSlc26a6 is an apically located, electrogenic Cl/SO42− exchanger. In addition, we found that both cmSlc26a1 and cmSlc26a6 were abundantly expressed in the kidney of embryos; SO42− was concentrated in a bladder-like structure of elephant fish embryos. Our results demonstrated that the PII segment of the nephron contributes to the secretion of excess SO42− by the kidney of elephant fish. Possible mechanisms for SO42− secretion in the PII segment are discussed.
机译:大多数脊椎动物(包括软骨鱼类)的血浆SO4 2-浓度([SO4 2-])保持在0.2-1 mM的窄范围内。由于海水中的[SO4 2-]比血浆高40倍,因此SO4 2-的排泄是肾脏在硬骨鱼类中的主要作用。已经提出,软骨鱼类还通过肾脏排泄过量的SO4 2-。但是,对于软骨鱼类中SO4 2-的潜在运输机制知之甚少,这在很大程度上是由于肾单位极其复杂的四环构型,其由至少10个形态上可区分的部分组成。在本研究中,我们从全头象鱼(Callorhinchus milii)的肾脏中确定了编码溶质载体家族26成员1(Slc26a1)和成员6(Slc26a6)的cDNA序列,即SO4 2-在哺乳动物和硬骨鱼肾脏中表达的转运蛋白。象鱼Slc26a1(cmSlc26a1)和cmSlc26a6 mRNA在肾单位的近端II(PII)节中共表达,该节段位于窦区的第二个环。使用非洲爪蟾卵母细胞的功能分析和免疫组织化学结果显示,cmSlc26a1是基底外侧定位的电中性SO4 2-转运蛋白,而cmSlc26a6是顶端定位的电生成的Cl - / SO4 < sup> 2-交换器。此外,我们发现cmSlc26a1和cmSlc26a6均在胚胎的肾脏中大量表达。 SO4 2-集中在象鱼胚胎的膀胱状结构中。我们的研究结果表明,肾象的PII节段有助于象鱼肾脏分泌过量的SO4 2-。讨论了PII段中SO4 2-分泌的可能机制。

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