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首页> 外文期刊>The Journal of Experimental Biology >Expression and functional analysis of mussel taurine transporter, as a key molecule in cellular osmoconforming
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Expression and functional analysis of mussel taurine transporter, as a key molecule in cellular osmoconforming

机译:贻贝牛磺酸转运蛋白,在细胞渗透调节中的关键分子的表达与功能分析

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Most aquatic invertebrates adapt to environmental osmotic changes primarily by the cellular osmoconforming process, in which osmolytes accumulated in their cells play an essential role. Taurine is one of the most widely utilized osmolytes and the most abundant in many molluscs. Here, we report the structure, function and expression of the taurine transporter in the Mediterranean blue mussel (muTAUT), as a key molecule in the cellular osmoconforming process. Deduced amino acid sequence identity among muTAUT and vertebrate taurine transporters is lower (47-51%) than that among vertebrate taurine transporters (>78%). muTAUT has a lower affinity and specificity for taurine and a requirement for higher NaCl concentration than vertebrate taurine transporters. This seems to reflect the internal environment of the mussel; higher NaCl and taurine concentrations. In addition to the hyperosmotic induction that has been reported for cloned taurine transporters, the increase in muTAUT mRNA was unexpectedly observed under hypoosmolality, which was depressed by the addition of taurine to ambient seawater. In view of the decrease in taurine content in mussel tissue under conditions of hypoosmolality reported previously, our results lead to the conclusion that muTAUT does not respond directly to hypoosmolality, but to the consequent decrease in taurine content. By immunohistochemistry, intensive expression of muTAUT was observed in the gill and epithelium of the mantle, which were directly exposed to intensive osmotic changes of ambient seawater.
机译:大多数水生无脊椎动物主要通过细胞渗透整合过程来适应环境渗透变化,在细胞渗透过程中,细胞中积累的渗透物起着至关重要的作用。牛磺酸是使用最广泛的渗透压剂之一,在许多软体动物中含量最丰富。在这里,我们报道牛磺酸转运蛋白在地中海蓝贻贝(muTAUT)中的结构,功能和表达,它是细胞渗透形成过程中的关键分子。 muTAUT和脊椎动物牛磺酸转运蛋白之间推导的氨基酸序列同一性较低(47-51%),而低于脊椎动物牛磺酸转运蛋白之间(> 78%)。与脊椎动物牛磺酸转运蛋白相比,muTAUT对牛磺酸的亲和力和特异性较低,对NaCl的浓度要求较高。这似乎反映了贻贝的内部环境;较高的NaCl和牛磺酸浓度。除了已报道的克隆牛磺酸转运蛋白的高渗诱导作用外,在低渗透压下出乎意料地观察到muTAUT mRNA的增加,这被向环境海水中添加牛磺酸所抑制。考虑到先前报道的在低渗性条件下贻贝组织中牛磺酸含量的减少,我们的结果得出的结论是muTAUT不能直接对低渗性做出反应,但会导致牛磺酸含量的下降。通过免疫组织化学,在直接暴露于周围海水的强烈渗透变化的地幔的and和上皮中观察到了muTAUT的强烈表达。

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