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Tritium Suicide Selection Identifies Proteins Involved in the Uptake and Intracellular Transport of Sterols in Saccharomyces cerevisiae

机译:Su自杀选择确定了参与酿酒酵母中甾醇的摄取和细胞内转运的蛋白质。

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Sterol transport between the plasma membrane (PM) and the endoplasmic reticulum (ER) occurs by a nonvesicular mechanism that is poorly understood. To identify proteins required for this process, we isolated Saccharomyces cerevisiae mutants with defects in sterol transport. We used Upc2-1 cells that have the ability to take up sterols under aerobic conditions and exploited the observation that intracellular accumulation of exogenously supplied [3H]cholesterol in the form of [3H]cholesteryl ester requires an intact PM-ER sterol transport pathway. Upc2-1 cells were mutagenized using a transposon library, incubated with [3H]cholesterol, and subjected to tritium suicide selection to isolate mutants with a decreased ability to accumulate [3H]cholesterol. Many of the mutants had defects in the expression and trafficking of Aus1 and Pdr11, PM-localized ABC transporters that are required for sterol uptake. Through characterization of one of the mutants, a new role was uncovered for the transcription factor Mot3 in controlling expression of Aus1 and Pdr11. A number of mutants had transposon insertions in the uncharacterized Ydr051c gene, which we now refer to as DET1 (decreased ergosterol transport). These mutants expressed Aus1 and Pdr11 normally but were severely defective in the ability to accumulate exogenously supplied cholesterol. The transport of newly synthesized sterols from the ER to the PM was also defective in det1Δ cells. These data indicate that the cytoplasmic protein encoded by DET1 is involved in intracellular sterol transport.
机译:质膜(PM)和内质网(ER)之间的甾醇转运是通过非囊泡机制发生的,人们对此知之甚少。为了鉴定该过程所需的蛋白质,我们分离了具有固醇转运缺陷的酿酒酵母突变体。我们使用了 Upc2-1 细胞,该细胞在有氧条件下能够吸收固醇,并利用观察到的细胞内积累的外源供应的[ 3 H]胆固醇形式为[ 3 H]胆固醇酯需要完整的PM-ER甾醇转运途径。使用转座子文库诱变 Upc2-1 细胞,将其与[ 3 H]胆固醇一起孵育,并进行自杀选择,以分离出具有较低积累能力的突变体[< sup> 3 H]胆固醇。许多突变体在固醇摄取所需的Aus1和Pdr11,PM定位的ABC转运蛋白的表达和运输中存在缺陷。通过特征之一的突变体,发现转录因子Mot3在控制Aus1和Pdr11表达中的新作用。许多突变体在未表征的Ydr051c基因中具有转座子插入,我们现在将其称为 DET1 d 增加了 e rgosterol t ransport)。这些突变体正常表达Aus1和Pdr11,但在积累外源提供的胆固醇的能力上存在严重缺陷。在 det1 Δ细胞中,新合成的甾醇从ER向PM的转运也存在缺陷。这些数据表明, DET1 编码的胞质蛋白参与细胞内固醇转运。

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