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在产朊假丝酵母质膜囊泡中乳酸质子同向转运活性的重建。

Reconstitution of lactate proton symport activity in plasma membrane vesicles from the yeast Candida utilis.

作者信息

Gerós H, Cássio F, Leão C

机构信息

Department of Biology, University of Minho, Braga, Portugal.

出版信息

Yeast. 1996 Sep 30;12(12):1263-72. doi: 10.1002/(SICI)1097-0061(19960930)12:12%3C1263::AID-YEA25%3E3.0.CO;2-A.

Abstract

Lactic acid transport was studied in plasma membrane vesicles from the yeast Candida utilis IGC 3092 which were fused with liposomes containing cytochrome c oxidase. After the addition of an electron donor system, these hybrid membrane vesicles were able to generate a proton-motive force of about--150 mV, inside alkaline and negative. In vesicles prepared from lactic acid-grown cells, the uptake of labelled lactic acid, at pH 6.2, under energized conditions, was expressed by a kinetics consistent with the involvement of a mediated transport system. This carrier exhibited a substrate specificity pattern identical to the one found for the lactate-proton symport in intact cells. The transport of labelled lactic acid was accumulative and strongly sensitive to the effects of the protonophore carbonyl cyanide p-(trifluoromethoxy)phenylhydrazone, consistent with the involvement of the proton-motive force in acid uptake, hence with the presence of a proton symport for lactate. Dissipation of the transmembrane electric potential by valinomycin did not have a significant effect on lactate accumulation, whereas abolishing the transmembrane pH gradient (delta pH) by nigericin prevented the accumulation and led to a rapid efflux of the accumulated acid. The data support that the delta pH is the main component of the proton-motive force involved in the transport of the acid and its accumulation. The lactate-proton symport stoichiometry was 1:1, being independent of the pH. Vesicles prepared from glucose-grown cells did not display the capacity to transport and accumulate lactate. However, activity for the carrier was also reconstituted in vesicles obtained from glucose-grown cells after incubation in buffer containing lactic acid. These results were consistent with those obtained in intact cells, which demonstrated that the lactate-proton symport of the yeast C. utilis is inducible.

摘要

在来自产朊假丝酵母IGC 3092的质膜囊泡中研究了乳酸转运,这些囊泡与含有细胞色素c氧化酶的脂质体融合。添加电子供体系统后,这些杂种膜囊泡能够产生约-150 mV的质子动力,内部呈碱性且带负电。在由乳酸生长的细胞制备的囊泡中,在pH 6.2、有能量供应的条件下,标记乳酸的摄取表现出与介导转运系统参与相一致的动力学。该载体表现出与完整细胞中乳酸-质子同向转运所发现的底物特异性模式相同。标记乳酸的转运是积累性的,并且对质子载体羰基氰化物p-(三氟甲氧基)苯腙的作用高度敏感,这与质子动力参与酸摄取一致,因此与存在乳酸的质子同向转运一致。缬氨霉素使跨膜电位消散对乳酸积累没有显著影响,而尼日利亚菌素消除跨膜pH梯度(ΔpH)则阻止了积累并导致积累的酸迅速外流。数据支持ΔpH是参与酸转运及其积累的质子动力的主要成分。乳酸-质子同向转运化学计量比为1:1,与pH无关。由葡萄糖生长的细胞制备的囊泡不显示转运和积累乳酸的能力。然而,在含有乳酸的缓冲液中孵育后,从葡萄糖生长的细胞获得的囊泡中也重建了载体活性。这些结果与在完整细胞中获得的结果一致,后者表明产朊假丝酵母的乳酸-质子同向转运是可诱导的。

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