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Primary structure and effect of pH on the expression of the plasma membrane H(+)-ATPase from Dunaliella acidophila and Dunaliella salina.

机译:pH的主要结构和pH对嗜酸杜氏藻和盐杜氏藻质膜H(+)-ATPase表达的影响。

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摘要

The plasma membrane H(+)-ATPase gene was cloned and sequenced from the extremely acidophilic green alga Dunaliella acidophila and from the extremely halotolerant Dunaliella salina. A special feature of the Dunaliella H(+)-ATPase is an extended C-terminal domain. The deduced amino acid sequences of the two proteins are 75% identical but differ in their C terminus. A hydrophilic loop within this domain in D. salina, which presumably faces the cell exterior, has a high ratio of acidic over basic amino acids, typical of halophilic proteins. The amount of the ATPase protein in plasma membranes and the level of its mRNA transcript in D. acidophila are far higher than in D. salina, suggesting that D. acidophila overexpresses the enzyme. A pH shift from 9.0 to 7.0 induces in D. salina a large increase in the level of the H(+)-ATPase mRNA and in the amount of the H(+)-ATPase protein. This suggests that the expression of the H(+)-ATPase in D. salina is pH-regulated at the transcriptional level. The implications of these findings are discussed with respect to the adaptive pressures imposed on these algal species by their exceptional environmental conditions.
机译:质膜H(+)-ATPase基因被克隆并从极端嗜酸的绿色藻类杜氏嗜酸菌和极端嗜盐的杜氏盐藻中测序。杜氏藻H(+)-ATPase的一个特殊功能是扩展的C末端域。推导的两种蛋白质的氨基酸序列有75%相同,但C末端不同。盐藻中此域内的亲水环(可能面向细胞外部)具有较高的酸性比碱性氨基酸(典型为嗜盐蛋白)高的比例。嗜酸D. salina中质膜中ATPase蛋白的量及其mRNA转录水平远高于盐藻D. salina,这表明嗜酸D.过表达该酶。从9.0到7.0的pH值变化会在盐沼中诱导H(+)-ATPase mRNA水平和H(+)-ATPase蛋白大量增加。这表明在盐藻中H(+)-ATPase的表达在转录水平受到pH调节。讨论了这些发现的含义,涉及它们特殊的环境条件对这些藻类物种施加的适应压力。

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  • 作者

    Weiss, M; Pick, U;

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  • 年度 1996
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  • 正文语种 en
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