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首页> 外文期刊>Journal of bacteriology >Characterization of sodium transport in Acholeplasma laidlawii B cells and in lipid vesicles containing purified A. laidlawii (Na+-Mg2+)-ATPase by using nuclear magnetic resonance spectroscopy and 22Na tracer techniques.
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Characterization of sodium transport in Acholeplasma laidlawii B cells and in lipid vesicles containing purified A. laidlawii (Na+-Mg2+)-ATPase by using nuclear magnetic resonance spectroscopy and 22Na tracer techniques.

机译:通过使用核磁共振波谱法和22Na示踪技术表征了羊草无节菌B细胞和含有纯化的羊草无定形菌(Na + -Mg2 +)-ATPase的脂质囊泡中的钠转运。

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The active transport of sodium ions in live Acholeplasma laidlawii B cells and in lipid vesicles containing the (Na+-Mg2+)-ATPase from the plasma membrane of this microorganism was studied by 23Na nuclear magnetic resonance spectroscopic and 22Na tracer techniques, respectively. In live A. laidlawii B cells, the transport of sodium was an active process in which metabolic energy was harnessed for the extrusion of sodium ions against a concentration gradient. The process was inhibited by low temperatures and by the formation of gel state lipid in the plasma membrane of this organism. In reconstituted proteoliposomes containing the purified (Na+-Mg2+)-ATPase, the hydrolysis of ATP was accompanied by the transport of sodium ions into the lipid vesicles, and the transport process was impaired by reagents known to inhibit ATPase activity. At the normal growth temperature (37 degrees C), this transport process required a maximum of 1 mol of ATP per mol of sodium ion transported. Together, these results provide direct experimental evidence that the (Na+-Mg2+)-ATPase of the Acholeplasma laidlawii B membrane is the cation pump which maintains the low levels of intracellular sodium characteristic of this microorganism.
机译:分别通过23Na核磁共振波谱法和22Na示踪剂技术研究了活的拟裂霍乱弧菌B细胞和含有(Na + -Mg2 +)-ATPase的脂质囊泡中钠离子的主动转运。在活的A. lawlawii B细胞中,钠的运输是一个活跃的过程,在该过程中,利用代谢能针对浓度梯度挤出钠离子。该过程受低温和该生物质膜中凝胶态脂质形成的抑制。在含有纯化的(Na + -Mg2 +)-ATPase的重组蛋白脂质体中,ATP的水解伴随着钠离子向脂质小泡的转运,而已知的抑制ATPase活性的试剂会损害转运过程。在正常生长温度(37摄氏度)下,此运输过程每运输1摩尔钠离子最多需要1摩尔ATP。总之,这些结果提供了直接的实验证据,即无毛破壁孢菌B膜的(Na + -Mg2 +)-ATPase是维持该微生物细胞内钠含量低水平的阳离子泵。

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