Pitarch Aida, Nombela César, Gil Concha
Complutense University of Madrid, Madrid, Spain.
Methods Mol Biol. 2008;425:241-63. doi: 10.1007/978-1-60327-210-0_20.
The yeast cell wall is a dynamic and complex matrix of polysaccharides (glucans, mannans, and chitin), proteins and minor amounts of lipids that isolate the yeast from the extracellular medium, protecting it against osmotic and physical injuries. Removal of this essential structure for cell integrity and viability by controlled enzymatic digestion in an iso-osmotic medium brings about protoplast formation. When yeast protoplasts are incubated in an osmotically stabilized liquid nutrient medium, cell wall precursors are secreted into the culture medium to de novosynthesize the cell wall. During the early stages of the regeneration process of protoplast walls, many wall protein precursors (presumably structural proteins along with remodeling and cross-linking enzymes) are shed into the extracellular medium but not covalently incorporated into the nascent cell wall, intriguingly enabling their easy isolation and solubilization. We have developed a method to collect proteins secreted from yeast protoplasts in active cell wall regeneration under conditions that are suitable for subsequent proteomic analyses. This procedure circumvents some of the troubles intrinsically related to other extraction protocols of cell wall proteins, such as chemical or enzymatic modifications, and poor quality in protein resolution and identification because of linkages to glucan/chitin residues. It further offers a valuable model system to understand how the de novocell wall biosynthesis occurs in the yeast cell or how the yeast cell wall participates in morphogenesis.
酵母细胞壁是由多糖(葡聚糖、甘露聚糖和几丁质)、蛋白质和少量脂质组成的动态复杂基质,它将酵母与细胞外培养基隔离开来,保护酵母免受渗透压和物理损伤。在等渗培养基中通过可控的酶消化去除这个对细胞完整性和活力至关重要的结构会导致原生质体形成。当酵母原生质体在渗透压稳定的液体营养培养基中培养时,细胞壁前体会分泌到培养基中以重新合成细胞壁。在原生质体壁再生的早期阶段,许多壁蛋白前体(可能是结构蛋白以及重塑和交联酶)会脱落到细胞外培养基中,但不会共价结合到新生的细胞壁中,有趣的是这使得它们易于分离和溶解。我们已经开发出一种方法,在适合后续蛋白质组学分析的条件下,收集酵母原生质体在活跃的细胞壁再生过程中分泌的蛋白质。该方法避免了一些与细胞壁蛋白其他提取方案本质相关的问题,例如化学或酶修饰,以及由于与葡聚糖/几丁质残基的连接而导致的蛋白质分辨率和鉴定质量差的问题。它还提供了一个有价值的模型系统,以了解酵母细胞中新生细胞壁生物合成是如何发生的,或者酵母细胞壁如何参与形态发生。