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Ectoine-Induced Proteins in Sinorhizobium meliloti Include an Ectoine ABC-Type Transporter Involved in Osmoprotection and Ectoine Catabolism

机译:苜蓿中华根瘤菌中由电子分泌诱导的蛋白质包括涉及渗透保护和电子分解代谢的电子分泌ABC型转运蛋白。

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摘要

To understand the mechanisms of ectoine-induced osmoprotection in Sinorhizobium meliloti, a proteomic examination of S. meliloti cells grown in minimal medium supplemented with ectoine was undertaken. This revealed the induction of 10 proteins. The protein products of eight genes were identified by using matrix-assisted laser desorption ionization-time-of-flight mass spectrometry. Five of these genes, with four other genes whose products were not detected on two-dimensional gels, belong to the same gene cluster, which is localized on the pSymB megaplasmid. Four of the nine genes encode the characteristic components of an ATP-binding cassette transporter that was named ehu, for ectoine/hydroxyectoine uptake. This transporter was encoded by four genes (ehuA, ehuB, ehuC, and ehuD) that formed an operon with another gene cluster that contains five genes, named eutABCDE for ectoine utilization. On the basis of sequence homologies, eutABCDE encode enzymes with putative and hypothetical functions in ectoine catabolism. Analysis of the properties of ehuA and eutA mutants suggests that S. meliloti possesses at least one additional ectoine catabolic pathway as well as a lower-affinity transport system for ectoine and hydroxyectoine. The expression of ehuB, as determined by measurements of UidA activity, was shown to be induced by ectoine and hydroxyectoine but not by glycine betaine or by high osmolality.
机译:为了了解在中华根瘤菌中油桃素诱导的渗透保护作用的机制,进行了蛋白质组学研究,该菌在生长于补充有植物素的基本培养基中生长的苜蓿链球菌。这揭示了10种蛋白质的诱导。通过使用基质辅助激光解吸电离飞行时间质谱法鉴定了八个基因的蛋白质产物。这些基因中的五个与其他四个在二维凝胶中未检测到其产物的基因属于同一基因簇,位于pSymB大质粒上。九个基因中的四个编码被称为ehu的ATP结合盒转运蛋白的特征性成分,以吸收外皮/羟基外皮。该转运蛋白由四个基因(ehuA,ehuB,ehuC和ehuD)编码,它们与另一个包含五个基因的基因簇形成操纵子,命名为eutABCDE,用于植物素的利用。根据序列同源性,eutABCDE编码的果胶分解代谢中具有假定和假设功能的酶。对ehuA和eutA突变体性质的分析表明,苜蓿链球菌具有至少一种其他的外泌素分解代谢途径以及低亲和力的外泌素和羟基外泌素转运系统。通过测量UidA活性确定的ehuB的表达被证明是由果胶和羟基果胶诱导的,而不是由甘氨酸甜菜碱或高渗透压诱导的。

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