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抑制 AAC2 致死性的 SAL1 调节酵母中异源表达的卤虫 ADP/ATP 载体对邦克克雷吉酮的敏感性。

The suppressor of AAC2 Lethality SAL1 modulates sensitivity of heterologously expressed artemia ADP/ATP carrier to bongkrekate in yeast.

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw, Poland.

出版信息

PLoS One. 2013 Sep 20;8(9):e74187. doi: 10.1371/journal.pone.0074187. eCollection 2013.

Abstract

The ADP/ATP carrier protein (AAC) expressed in Artemia franciscana is refractory to bongkrekate. We generated two strains of Saccharomyces cerevisiae where AAC1 and AAC3 were inactivated and the AAC2 isoform was replaced with Artemia AAC containing a hemagglutinin tag (ArAAC-HA). In one of the strains the suppressor of ΔAAC2 lethality, SAL1, was also inactivated but a plasmid coding for yeast AAC2 was included, because the ArAACΔsal1Δ strain was lethal. In both strains ArAAC-HA was expressed and correctly localized to the mitochondria. Peptide sequencing of ArAAC expressed in Artemia and that expressed in the modified yeasts revealed identical amino acid sequences. The isolated mitochondria from both modified strains developed 85% of the membrane potential attained by mitochondria of control strains, and addition of ADP yielded bongkrekate-sensitive depolarizations implying acquired sensitivity of ArAAC-mediated adenine nucleotide exchange to this poison, independent from SAL1. However, growth of ArAAC-expressing yeasts in glycerol-containing media was arrested by bongkrekate only in the presence of SAL1. We conclude that the mitochondrial environment of yeasts relying on respiratory growth conferred sensitivity of ArAAC to bongkrekate in a SAL1-dependent manner.

摘要

卤代酸铵载体蛋白(AAC)在卤虫中表达,对邦克来酸具有抗性。我们生成了两种酿酒酵母菌株,其中 AAC1 和 AAC3 失活,AAC2 同工型被带有血凝素标签的卤虫 AAC(ArAAC-HA)取代。在其中一个菌株中,AAC2 致死性的抑制因子 SAL1 也失活,但包含了编码酵母 AAC2 的质粒,因为 ArAACΔsal1Δ 菌株是致死的。在这两种菌株中,ArAAC-HA 均得到表达,并正确定位于线粒体。在卤虫中表达的和在修饰的酵母中表达的 ArAAC 的肽测序揭示了相同的氨基酸序列。从这两种修饰菌株中分离出的线粒体产生了对照菌株中达到的膜电位的 85%,并且添加 ADP 导致了对邦克来酸敏感的去极化,这意味着 ArAAC 介导的腺嘌呤核苷酸交换对这种毒素的获得敏感性,独立于 SAL1。然而,只有在存在 SAL1 的情况下,表达 ArAAC 的酵母在含有甘油的培养基中的生长才会被邦克来酸抑制。我们得出结论,依赖呼吸生长的酵母的线粒体环境以 SAL1 依赖的方式赋予了 ArAAC 对邦克来酸的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c53/3779231/83345fd4f0cc/pone.0074187.g001.jpg

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