首页> 美国卫生研究院文献>Journal of Bacteriology >Physiological role and membrane lipid modulation of the membrane-bound (Mg2+ na+)-adenosine triphosphatase activity in Acholeplasma laidlawii.
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Physiological role and membrane lipid modulation of the membrane-bound (Mg2+ na+)-adenosine triphosphatase activity in Acholeplasma laidlawii.

机译:羊膜无破膜的膜结合的(Mg2 +na +)-腺苷三磷酸酶活性的生理作用和膜脂质调节。

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摘要

The membrane-bound adenosine triphosphatase (ATPase) activity of Acholeplasma laidlawii B differs in many respects from the common (Mg2+, Ca2+)-ATPase activity of higher bacteria, most notably in that it is specifically activated by Mg2+ and strongly and specifically stimulated by Na+ (or Li+). Various inhibitors diminish the ATPase activity with a concentration dependence which suggests that a single enzyme species is responsible for all of the observed ATP hydrolytic activity (both basal and Na+ stimulated). The Km for ATP is influenced by temperature but not by membrane lipid fatty acid composition. Vmax is influenced by both of these factors, showing a break in Arrhenius plots which falls below the lipid phase transition midpoint but well above the lower boundary when a phase transition occurs within the temperature range studied. The apparent energy of activation for Vmax is strongly influenced by lipid fatty acid composition both above and below the break. When whole cells of A. laidlawii B are incubated in KCl or NaCl buffers, they rapidly swell and lyse if deprived of an energy source or treated with ATPase inhibitors at concentrations which significantly inhibit enzyme activity in isolated membranes, whereas in sucrose or MgSO4 buffers of equal osmolarity, the cells are stable under these conditions. These results suggest that the membrane ATPase of A. laidlawii B is intimately associated with the membrane lipids and that it functions as a monovalent cation pump which regulates intracellular osmolarity as the (Na+, K+)-ATPase does in eucaryotes.
机译:羊草无孢菌B的膜结合腺苷三磷酸酶(ATPase)活性在许多方面与高级细菌的普通(Mg2 +,Ca2 +)-ATPase活性不同,最显着的是它被Mg2 +特异性激活,并被Na +强烈刺激。 (或Li +)。各种抑制剂都具有浓度依赖性,从而降低了ATPase的活性,这表明单个酶物种负责观察到的所有ATP水解活性(受碱和Na +刺激)。 ATP的Km受温度影响,但不受膜脂质脂肪酸组成的影响。 Vmax受这两个因素的影响,显示出在Arrhenius图中的断裂,该断裂低于脂质相变中点,但在所研究的温度范围内发生相变时,其远高于下边界。 Vmax活化的表观能量受断裂上方和下方的脂脂肪酸组成的强烈影响。在A. Ladelawii B的全细胞中在KCl或NaCl缓冲液中孵育时,如果缺乏能量或以明显抑制分离膜中酶活性的浓度用ATPase抑制剂处理,则它们会迅速溶胀和溶解,而在蔗糖或MgSO4缓冲液中渗透压相等时,细胞在这些条件下是稳定的。这些结果表明,棉假单胞菌的膜ATP酶与膜脂质密切相关,并且它作为单价阳离子泵起作用,就像真核生物中的(Na +,K +)-ATPase一样调节细胞内渗透压。

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