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酵母 ABC 转运蛋白 Pdr18(ORF YNR070w)控制质膜甾醇组成,在多重耐药性中起作用。

The yeast ABC transporter Pdr18 (ORF YNR070w) controls plasma membrane sterol composition, playing a role in multidrug resistance.

机构信息

IBB - Institute for Biotechnology and Bioengineering, Centre for Biological and Chemical Engineering, Instituto Superior Técnico, 1049-001 Lisboa, Portugal.

出版信息

Biochem J. 2011 Dec 1;440(2):195-202. doi: 10.1042/BJ20110876.

Abstract

The action of multidrug efflux pumps in MDR (multidrug resistance) acquisition has been proposed to partially depend on the transport of physiological substrates which may indirectly affect drug partition and transport across cell membranes. In the present study, the PDR18 gene [ORF (open reading frame) YNR070w], encoding a putative PDR (pleiotropic drug resistance) transporter of the ATP-binding cassette superfamily, was found to mediate plasma membrane sterol incorporation in yeast. The physiological role of Pdr18 is demonstrated to affect plasma membrane potential and is proposed to underlie its action as a MDR determinant, conferring resistance to the herbicide 2,4-D (2,4-dichlorophenoxyacetic acid). The action of Pdr18 in yeast tolerance to 2,4-D, which was found to contribute to reduce [(14)C]2,4-D intracellular accumulation, may be indirect, given the observation that 2,4-D exposure deeply affects the sterol plasma membrane composition, this effect being much stronger in a Δpdr18 background. PDR18 activation under 2,4-D stress is regulated by the transcription factors Nrg1, controlling carbon source availability and the stress response, and, less significantly, Yap1, involved in oxidative stress and MDR, and Pdr3, a key regulator of the yeast PDR network, consistent with a broad role in stress defence. Taken together, the results of the present study suggest that Pdr18 plays a role in plasma membrane sterol incorporation, this physiological trait contributing to an MDR phenotype.

摘要

多药外排泵在多药耐药(MDR)获得中的作用部分依赖于生理底物的转运,这可能间接影响药物在细胞膜内外的分配和转运。在本研究中,发现 PDR18 基因[ORF(开放阅读框)YNR070w],编码 ABC 超家族的一种假定 PDR(多药耐药)转运蛋白,介导酵母质膜固醇掺入。Pdr18 的生理作用被证明会影响质膜电位,并被认为是其作为 MDR 决定因素的作用基础,赋予其对除草剂 2,4-D(2,4-二氯苯氧乙酸)的抗性。Pdr18 在酵母对 2,4-D 的耐受性中的作用,这被发现有助于减少[14C]2,4-D 的细胞内积累,可能是间接的,因为观察到 2,4-D 暴露会严重影响固醇质膜组成,在Δpdr18 背景下这种影响更强。Nrg1 转录因子调控 2,4-D 应激下的 PDR18 激活,Nrg1 控制碳源可用性和应激反应, Yap1 也有一定程度的调控作用,参与氧化应激和 MDR,而 Pdr3 是酵母 PDR 网络的关键调节因子,与广泛的应激防御作用一致。总之,本研究结果表明,Pdr18 在质膜固醇掺入中发挥作用,这种生理特征有助于 MDR 表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded7/3215286/41cb18a0c2e0/bic509i001.jpg

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