Wang Hong X, Douglas Lois M, Aimanianda Vishukumar, Latgé Jean-Paul, Konopka James B
Department of Molecular Genetics and Microbiology, Stony Brook University, Stony Brook, NY 11794-5222, USA.
Eukaryot Cell. 2011 Jan;10(1):72-80. doi: 10.1128/EC.00167-10. Epub 2010 Nov 29.
The Candida albicans plasma membrane plays important roles in interfacing with the environment, morphogenesis, and cell wall synthesis. The role of the Sur7 protein in cell wall structure and function was analyzed, since previous studies showed that this plasma membrane protein is needed to prevent abnormal intracellular growth of the cell wall. Sur7 localizes to stable patches in the plasma membrane, known as MCC (membrane compartment occupied by Can1), that are associated with eisosome proteins. The sur7Δ mutant cells displayed increased sensitivity to factors that exacerbate cell wall defects, such as detergent (SDS) and the chitin-binding agents calcofluor white and Congo red. The sur7Δ cells were also slightly more sensitive to inhibitors that block the synthesis of cell wall chitin (nikkomycin Z) and β-1,3-glucan (caspofungin). In contrast, Fmp45, a paralog of Sur7 that also localizes to punctate plasma membrane patches, did not have a detectable role in cell wall synthesis. Chemical analysis of cell wall composition demonstrated that sur7Δ cells contain decreased levels of β-glucan, a glucose polymer that confers rigidity on the cell wall. Consistent with this, sur7Δ cells were more sensitive to lysis, which could be partially rescued by increasing the osmolarity of the medium. Interestingly, Sur7 is present in static patches, whereas β-1,3-glucan synthase is mobile in the plasma membrane and is often associated with actin patches. Thus, Sur7 may influence β-glucan synthesis indirectly, perhaps by altering the functions of the cell signaling components that localize to the MCC and eisosome domains.
白色念珠菌的质膜在与环境相互作用、形态发生和细胞壁合成中发挥着重要作用。由于先前的研究表明这种质膜蛋白是防止细胞壁异常细胞内生长所必需的,因此分析了Sur7蛋白在细胞壁结构和功能中的作用。Sur7定位于质膜中的稳定斑块,称为MCC(被Can1占据的膜区室),这些斑块与胞膜窖蛋白相关。sur7Δ突变细胞对加剧细胞壁缺陷的因素(如去污剂(SDS)以及几丁质结合剂荧光增白剂和刚果红)的敏感性增加。sur7Δ细胞对阻断细胞壁几丁质(多氧霉素Z)和β-1,3-葡聚糖(卡泊芬净)合成的抑制剂也略敏感。相比之下,Fmp45是Sur7的旁系同源物,也定位于点状质膜斑块,在细胞壁合成中未发挥可检测到的作用。细胞壁成分的化学分析表明,sur7Δ细胞中β-葡聚糖(一种赋予细胞壁刚性的葡萄糖聚合物)水平降低。与此一致的是,sur7Δ细胞对裂解更敏感,增加培养基的渗透压可部分挽救这种情况。有趣的是,Sur7存在于静态斑块中,而β-1,3-葡聚糖合酶在质膜中是可移动的,并且经常与肌动蛋白斑块相关。因此,Sur7可能间接影响β-葡聚糖合成,也许是通过改变定位于MCC和胞膜窖结构域的细胞信号成分的功能。