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大肠杆菌的乳糖/H⁺载体:lac YUN突变降低了主动运输速率并模拟了能量解偶联表型。

The lactose/H+ carrier of Escherichia coli: lac YUN mutation decreases the rate of active transport and mimics an energy-uncoupled phenotype.

作者信息

Wright J K, Seckler R

出版信息

Biochem J. 1985 Apr 1;227(1):287-97. doi: 10.1042/bj2270287.

Abstract

The Escherichia coli K12 strain X71-54 carries the lac YUN allele, coding for a lactose/H+ carrier defective in the accumulation of a number of galactosides [Wilson, Kusch & Kashket (1970) Biochem. Biophys. Res. Commun. 40, 1409-1414]. Previous studies proposed that the lower accumulation in the mutant be due to a faulty coupling of H+ and galactoside fluxes via the carrier. Immunochemical characterization of the carriers in membranes from mutant and parent strains with an antibody directed against the C-terminal decapeptide of the wild-type carrier leads to the conclusion that the mutant carrier is similar to the wild-type in terms of apparent Mr, C-terminal sequence, and level of incorporation into the membrane. The pH-dependence of galactoside transport was compared in the mutant and the parent. At pH 8.0-9.0, mutant and parent behave similarly with respect to the accumulation of beta-D-galactosyl 1-thio-beta-D-galactoside and to the ability to grow on the carrier substrate melibiose. At pH 6.0, both the maximal velocity for active transport and the level of accumulation of beta-D-galactosyl-1-thio-beta-D-galactoside are lower in the mutant. The mutant also is unable to grow on melibiose at pH 5.5. However, at pH 6.0 and low galactoside concentrations, the symport stoichiometry is 0.90 H+ per galactoside in the mutant as compared with 1.07 in the parent. These observations suggest that symport is normal in the mutant and that the lower rate of transport in the mutant is responsible for the phenotype. At higher galactoside concentrations, accumulation is determined not only thermodynamically but also kinetically, contrary to a simple interpretation of the chemiosmotic theory. Therefore lower rates of active transport can mimic the effect of uncoupling H+ and galactoside symport. Examination of countertransport in poisoned cells at pH 6.0 reveals that the rate constants for the reorientation of the loaded and unloaded carrier are altered in the mutant. The reorientation of the unloaded carrier is slower in the mutant. However, the reorientation of the galactoside-H+-carrier complex is slower for substrates like melibiose, but faster for substrates like lactose. These findings suggest that lactose-like and melibiose-like substrates interact with the carrier in slightly different ways.

摘要

大肠杆菌K12菌株X71 - 54携带lac YUN等位基因,编码一种乳糖/H⁺载体,该载体在多种半乳糖苷的积累方面存在缺陷[威尔逊、库施和卡什凯特(1970年)《生物化学与生物物理学研究通讯》40,1409 - 1414]。先前的研究表明,突变体中较低的积累量是由于通过载体的H⁺和半乳糖苷通量耦合出现故障。用针对野生型载体C末端十肽的抗体对突变体和亲本菌株膜中的载体进行免疫化学表征,得出的结论是,突变体载体在表观相对分子质量、C末端序列以及整合到膜中的水平方面与野生型相似。比较了突变体和亲本中半乳糖苷转运的pH依赖性。在pH 8.0 - 9.0时,突变体和亲本在β - D - 半乳糖基1 - 硫代 - β - D - 半乳糖苷的积累以及在载体底物蜜二糖上生长的能力方面表现相似。在pH 6.0时,突变体中主动转运的最大速度和β - D - 半乳糖基 - 1 - 硫代 - β - D - 半乳糖苷的积累水平均较低。突变体在pH 5.5时也无法在蜜二糖上生长。然而,在pH 6.0和低半乳糖苷浓度下,突变体中协同转运的化学计量比为每半乳糖苷0.90个H⁺,而亲本中为1.07个。这些观察结果表明,突变体中的协同转运是正常的,突变体中较低的转运速率导致了该表型。在较高半乳糖苷浓度下,积累不仅由热力学决定,还由动力学决定,这与化学渗透理论的简单解释相反。因此,较低的主动转运速率可以模拟H⁺和半乳糖苷协同转运解偶联的效果。在pH 6.0时对中毒细胞中的逆向转运进行检测发现,突变体中负载和未负载载体重新定向的速率常数发生了改变。突变体中未负载载体的重新定向较慢。然而,对于蜜二糖等底物,半乳糖苷 - H⁺ - 载体复合物的重新定向较慢,而对于乳糖等底物则较快。这些发现表明,乳糖样和蜜二糖样底物与载体的相互作用方式略有不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36e6/1144838/6c6d62a49575/biochemj00306-0281-a.jpg

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