Rosas-Hernández Lluvia L, Juárez-Reyes Alejandro, Arroyo-Helguera Omar E, De Las Peñas Alejandro, Pan Shih-Jung, Cormack Brendan P, Castaño Irene
División de Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica, Camino a la Presa San José #2055, San Luis Potosí, San Luis Potosí 78216, México.
Eukaryot Cell. 2008 Dec;7(12):2168-78. doi: 10.1128/EC.00228-08. Epub 2008 Oct 3.
Candida glabrata, a common opportunistic fungal pathogen, adheres efficiently to mammalian epithelial cells in culture. This interaction in vitro depends mainly on the adhesin Epa1, one of a large family of cell wall proteins. Most of the EPA genes are located in subtelomeric regions, where they are transcriptionally repressed by silencing. In order to better characterize the transcriptional regulation of the EPA family, we have assessed the importance of C. glabrata orthologues of known regulators of subtelomeric silencing in Saccharomyces cerevisiae. To this end, we used a series of strains containing insertions of the reporter URA3 gene within different intergenic regions throughout four telomeres of C. glabrata. Using these reporter strains, we have assessed the roles of SIR2, SIR3, SIR4, HDF1 (yKu70), HDF2 (yKu80), and RIF1 in mediating silencing at four C. glabrata telomeres. We found that, whereas the SIR proteins are absolutely required for silencing of the reporter genes and the native subtelomeric EPA genes, the Rif1 and the Ku proteins regulate silencing at only a subset of the analyzed telomeres. We also mapped a cis element adjacent to the EPA3 locus that can silence a reporter gene when placed at a distance of 31 kb from the telomere. Our data show that silencing of the C. glabrata telomeres varies from telomere to telomere. In addition, recruitment of silencing proteins to the subtelomeres is likely, for certain telomeres, to depend both on the telomeric repeats and on particular discrete silencing elements.
光滑念珠菌是一种常见的机会性真菌病原体,能在培养物中高效粘附于哺乳动物上皮细胞。这种体外相互作用主要取决于粘附素Epa1,它是细胞壁蛋白大家族中的一员。大多数EPA基因位于亚端粒区域,在那里它们通过沉默被转录抑制。为了更好地表征EPA家族的转录调控,我们评估了酿酒酵母中已知的亚端粒沉默调节因子在光滑念珠菌中的直系同源物的重要性。为此,我们使用了一系列菌株,这些菌株在光滑念珠菌的四个端粒的不同基因间区域插入了报告基因URA3。利用这些报告菌株,我们评估了SIR2、SIR3、SIR4、HDF1(yKu70)、HDF2(yKu80)和RIF1在介导光滑念珠菌四个端粒沉默中的作用。我们发现,虽然SIR蛋白是报告基因和天然亚端粒EPA基因沉默绝对必需的,但Rif1和Ku蛋白仅在一部分被分析的端粒中调节沉默。我们还绘制了一个与EPA3基因座相邻的顺式元件,当它被放置在距离端粒31 kb处时可以使报告基因沉默。我们的数据表明,光滑念珠菌端粒的沉默在不同端粒之间存在差异。此外,对于某些端粒,沉默蛋白募集到亚端粒可能既取决于端粒重复序列,也取决于特定的离散沉默元件。