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酿酒酵母液泡腔蛋白质组分析。

Analysis of the vacuolar luminal proteome of Saccharomyces cerevisiae.

作者信息

Sarry Jean-Emmanuel, Chen Sixue, Collum Richard P, Liang Shun, Peng Mingsheng, Lang Albert, Naumann Bianca, Dzierszinski Florence, Yuan Chao-Xing, Hippler Michael, Rea Philip A

机构信息

Department of Biology, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

FEBS J. 2007 Aug;274(16):4287-305. doi: 10.1111/j.1742-4658.2007.05959.x. Epub 2007 Jul 25.

Abstract

Despite its large size and the numerous processes in which it is implicated, neither the identity nor the functions of the proteins targeted to the yeast vacuole have been defined comprehensively. In order to establish a methodological platform and protein inventory to address this shortfall, we refined techniques for the purification of 'proteomics-grade' intact vacuoles. As confirmed by retention of the preloaded fluorescent conjugate glutathione-bimane throughout the fractionation procedure, the resistance of soluble proteins that copurify with this fraction to digestion by exogenous extravacuolar proteinase K, and the results of flow cytometric, western and marker enzyme activity analyses, vacuoles prepared in this way retain most of their protein content and are of high purity and integrity. Using this material, 360 polypeptides species associated with the soluble fraction of the vacuolar isolates were resolved reproducibly by 2D gel electrophoresis. Of these, 260 were identified by peptide mass fingerprinting and peptide sequencing by MALDI-MS and liquid chromatography coupled to ion trap or quadrupole TOF tandem MS, respectively. The polypeptides identified in this way, many of which correspond to alternate size and charge states of the same parent translation product, can be assigned to 117 unique ORFs. Most of the proteins identified are canonical vacuolar proteases, glycosidases, phosphohydrolases, lipid-binding proteins or established vacuolar proteins of unknown function, or other proteases, glycosidases, lipid-binding proteins, regulatory proteins or proteins involved in intermediary metabolism, protein synthesis, folding or targeting, or the alleviation of oxidative stress. On the basis of the high purity of the vacuolar preparations, the electrophoretic properties of the proteins identified and the results of quantitative proteinase K protection measurements, many of the noncanonical vacuolar proteins identified are concluded to have entered this compartment for breakdown, processing and/or salvage purposes.

摘要

尽管酵母液泡体积较大且涉及众多过程,但其靶向蛋白的身份和功能均未得到全面界定。为了建立一个方法平台和蛋白质清单来弥补这一不足,我们改进了“蛋白质组学级”完整液泡的纯化技术。通过在整个分级分离过程中保留预加载的荧光共轭物谷胱甘肽-双马来酰胺、与该级分共纯化的可溶性蛋白质对外源液泡外蛋白酶K消化的抗性以及流式细胞术、蛋白质印迹和标记酶活性分析的结果证实,以这种方式制备的液泡保留了其大部分蛋白质成分,并且具有高纯度和完整性。利用这种材料,通过二维凝胶电泳可重复分离出与液泡分离物可溶性部分相关的360种多肽。其中,分别通过基质辅助激光解吸电离质谱(MALDI-MS)和液相色谱与离子阱或四极杆飞行时间串联质谱联用的肽质量指纹图谱和肽测序鉴定出260种。以这种方式鉴定出的多肽,其中许多对应于同一亲本翻译产物的不同大小和电荷状态,可归为117个独特的开放阅读框(ORF)。鉴定出的大多数蛋白质是典型的液泡蛋白酶、糖苷酶、磷酸水解酶、脂质结合蛋白或功能未知的既定液泡蛋白,或其他蛋白酶、糖苷酶、脂质结合蛋白、调节蛋白或参与中间代谢、蛋白质合成、折叠或靶向或减轻氧化应激作用的蛋白质。基于液泡制剂的高纯度、鉴定出的蛋白质的电泳性质以及定量蛋白酶K保护测量的结果,得出结论:许多鉴定出的非典型液泡蛋白进入该区室是为了分解、加工和/或回收利用。

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