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葡萄糖诱导的酿酒酵母中糖基磷脂酰肌醇锚定胞外蛋白的顺序加工

Glucose-induced sequential processing of a glycosyl-phosphatidylinositol-anchored ectoprotein in Saccharomyces cerevisiae.

作者信息

Müller G, Gross E, Wied S, Bandlow W

机构信息

Hoechst Aktiengesellschaft Frankfurt am Main, Frankfurt, Germany.

出版信息

Mol Cell Biol. 1996 Jan;16(1):442-56. doi: 10.1128/MCB.16.1.442.

Abstract

Transfer of spheroplasts from the yeast Saccharomyces cerevisiae to glucose leads to the activation of an endogenous (glycosyl)-phosphatidylinositol-specific phospholipase C ([G]PI-PLC), which cleaves the anchor of at least one glycosyl-phosphatidylinositol (GPI)-anchored protein, the cyclic AMP (cAMP)-binding ectoprotein Gce1p (G. Müller and W. Bandlow, J. Cell Biol. 122:325-336, 1993). Analyses of the turnover of two constituents of the anchor, myo-inositol and ethanolamine, relative to the protein label as well as separation of the two differently processed versions of Gce1p by isoelectric focusing in spheroplasts demonstrate the glucose-induced conversion of amphiphilic Gce1p first into a lipolytically cleaved hydrophilic intermediate, which is then processed into another hydrophilic version lacking both myo-inositol and ethanolamine. When incubated with unlabeled spheroplasts, the lipolytically cleaved intermediate prepared in vitro is converted into the version lacking all anchor constituents, whereby the anchor glycan is apparently removed as a whole. The secondary cleavage ensues independently of the carbon source, attributing the key role in glucose-induced anchor processing to the endogenous (G)PI-PLC. The secondary processing of the lipolytically cleaved intermediate of Gce1p at the plasma membrane is correlated with the emergence of a covalently linked high-molecular-weight form of a cAMP-binding protein at the cell wall. This protein lacks anchor components, and its protein moiety appears to be identical with double-processed Gce1p detectable at the plasma membrane in spheroplasts. The data suggest that glucose-induced double processing of GPI anchors represents part of a mechanism of regulated cell wall expression of proteins in yeast cells.

摘要

将酿酒酵母的原生质球转移至葡萄糖会导致内源性(糖基)磷脂酰肌醇特异性磷脂酶C([G]PI-PLC)的激活,该酶可切割至少一种糖基磷脂酰肌醇(GPI)锚定蛋白——环磷酸腺苷(cAMP)结合胞外蛋白Gce1p的锚定基团(G. Müller和W. Bandlow,《细胞生物学杂志》122:325 - 336,1993年)。通过分析锚定基团的两种成分——肌醇和乙醇胺相对于蛋白质标记物的周转情况,以及在原生质球中通过等电聚焦分离Gce1p的两种不同加工形式,结果表明葡萄糖诱导两亲性Gce1p首先转化为经脂解切割的亲水性中间体,然后再加工成另一种既缺乏肌醇又缺乏乙醇胺的亲水性形式。当与未标记的原生质球一起孵育时,体外制备的经脂解切割的中间体转化为缺乏所有锚定成分的形式,由此锚定聚糖显然作为一个整体被去除。二次切割独立于碳源发生,这表明内源性(G)PI-PLC在葡萄糖诱导的锚定基团加工过程中起关键作用。Gce1p经脂解切割的中间体在质膜上的二次加工与细胞壁上一种cAMP结合蛋白的共价连接高分子量形式的出现相关。这种蛋白质缺乏锚定成分,其蛋白质部分似乎与在原生质球质膜上可检测到的经过双重加工的Gce1p相同。这些数据表明,葡萄糖诱导的GPI锚定基团双重加工是酵母细胞中蛋白质细胞壁表达调控机制的一部分。

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