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乳糖与磷酸化的磷酸载体蛋白HPr(Ser-P)对短乳杆菌乳糖/H⁺同向转运通透酶的协同结合。

Cooperative binding of lactose and the phosphorylated phosphocarrier protein HPr(Ser-P) to the lactose/H+ symport permease of Lactobacillus brevis.

作者信息

Ye J J, Saier M H

机构信息

Department of Biology, University of California at San Diego, La Jolla 92093-0116.

出版信息

Proc Natl Acad Sci U S A. 1995 Jan 17;92(2):417-21. doi: 10.1073/pnas.92.2.417.

DOI:10.1073/pnas.92.2.417
PMID:7831302
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC42751/
Abstract

Lactobacillus brevis accumulates lactose and nonmetabolizable lactose analogues via sugar/H+ symport, but addition of glucose to the extracellular medium results in rapid efflux of the free sugar from the cells due to the uncoupling of sugar transport from proton transport. By using vesicles of L. brevis cells, we recently showed that these regulatory/effects could be attributed to the metabolite-activated ATP-dependent protein kinase-catalyzed phosphorylation of serine-46 in the phosphocarrier protein HPr [HPr(Ser-P)] of the phosphotransferase system and that a mutant form of HPr with the serine-46-->aspartate replacement ([S46D]HPr) is apparently locked in the seryl phosphorylated conformation. We here demonstrate that [S46D]HPr binds directly to inside-out membrane vesicles of L. brevis that contain the lactose permease. Sugar substrates of the permease markedly and specifically stimulate binding of [S46D]HPr to the membranes while certain transport inhibitors such as N-ethylmaleimide block binding. The pH dependency for binding follows that for transport. Wild-type HPr and the [S46A]HPr mutant protein did not appreciably compete with [S46D]HPr for binding to the permease. These results provide evidence for the direct interaction of HPr(Ser-P) with an allosteric site on the lactose/proton symporter of L. brevis for the purpose of regulating sugar accumulation in response to the metabolic needs of the cell.

摘要

短乳杆菌通过糖/H⁺同向转运积累乳糖和不可代谢的乳糖类似物,但向细胞外培养基中添加葡萄糖会导致游离糖从细胞中快速流出,这是由于糖转运与质子转运解偶联所致。通过使用短乳杆菌细胞的囊泡,我们最近发现这些调节作用可归因于代谢物激活的、ATP依赖的蛋白激酶催化磷酸转移酶系统的磷酸载体蛋白HPr中丝氨酸46的磷酸化[HPr(Ser-P)],并且丝氨酸46被天冬氨酸取代的HPr突变形式([S46D]HPr)显然被锁定在丝氨酸磷酸化构象中。我们在此证明,[S46D]HPr直接结合到含有乳糖通透酶的短乳杆菌内翻膜囊泡上。通透酶的糖类底物显著且特异性地刺激[S46D]HPr与膜的结合,而某些转运抑制剂如N-乙基马来酰亚胺则会阻断结合。结合的pH依赖性与转运的pH依赖性一致。野生型HPr和[S46A]HPr突变蛋白与[S46D]HPr竞争结合通透酶的能力不明显。这些结果为HPr(Ser-P)与短乳杆菌乳糖/质子同向转运体上的变构位点直接相互作用提供了证据,目的是根据细胞的代谢需求调节糖的积累。

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Cooperative binding of lactose and the phosphorylated phosphocarrier protein HPr(Ser-P) to the lactose/H+ symport permease of Lactobacillus brevis.乳糖与磷酸化的磷酸载体蛋白HPr(Ser-P)对短乳杆菌乳糖/H⁺同向转运通透酶的协同结合。
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