Kondoh O, Tachibana Y, Ohya Y, Arisawa M, Watanabe T
Department of Mycology, Nippon Roche Research Center, Kamakura, Kanagawa, Japan.
J Bacteriol. 1997 Dec;179(24):7734-41. doi: 10.1128/jb.179.24.7734-7741.1997.
The Saccharomyces cerevisiae RHO1 gene encodes a low-molecular-weight GTPase. One of its recently identified functions is the regulation of beta-1,3-glucan synthase, which synthesizes the main component of the fungal cell wall (J. Drgonova et al., Science 272:277-279, 1996; T. Mazur and W. Baginsky, J. Biol. Chem. 271:14604-14609, 1996; and H. Qadota et al., Science 272:279-281, 1996). From the opportunistic pathogenic fungus Candida albicans, we cloned the RHO1 gene by the PCR and cross-hybridization methods. Sequence analysis revealed that the Candida RHO1 gene has a 597-nucleotide region which encodes a putative 22.0-kDa peptide. The deduced amino acid sequence predicts that Candida albicans Rho1p is 82.9% identical to Saccharomyces Rho1p and contains all the domains conserved among Rho-type GTPases from other organisms. The Candida albicans RHO1 gene could rescue a S. cerevisiae strain containing a rho1 deletion. Furthermore, recombinant Candida albicans Rho1p could reactivate the beta-1,3-glucan synthesis activities of both C. albicans and S. cerevisiae membranes in which endogenous Rho1p had been depleted by Tergitol NP-40-NaCl treatment. Candida albicans Rho1p was copurified with the beta-1,3-glucan synthase putative catalytic subunit, Candida albicans Gsc1p, by product entrapment. Candida albicans Rho1p was shown to interact directly with Candida albicans Gsc1p in a ligand overlay assay and a cross-linking study. These results indicate that Candida albicans Rho1p acts in the same manner as Saccharomyces cerevisiae Rho1p to regulate beta-1,3-glucan synthesis.
酿酒酵母RHO1基因编码一种低分子量GTP酶。其最近确定的功能之一是对β-1,3-葡聚糖合酶的调控,该酶可合成真菌细胞壁的主要成分(J. 德尔戈诺娃等人,《科学》272:277 - 279,1996;T. 马祖尔和W. 巴金斯基,《生物化学杂志》271:14604 - 14609,1996;以及H. 卡多塔等人,《科学》272:279 - 281,1996)。我们通过PCR和交叉杂交方法从机会致病性真菌白色念珠菌中克隆了RHO1基因。序列分析表明,白色念珠菌RHO1基因有一个597个核苷酸的区域,编码一个推测的22.0 kDa肽段。推导的氨基酸序列预测,白色念珠菌Rho1p与酿酒酵母Rho1p的同源性为82.9%,并包含其他生物体Rho型GTP酶中保守的所有结构域。白色念珠菌RHO1基因可以拯救含有rho1缺失的酿酒酵母菌株。此外,重组白色念珠菌Rho1p可以重新激活经Tergitol NP - 40 - NaCl处理使内源性Rho1p耗竭的白色念珠菌和酿酒酵母细胞膜的β-1,3-葡聚糖合成活性。通过产物截留法,白色念珠菌Rho1p与β-1,3-葡聚糖合酶推测的催化亚基白色念珠菌Gsc1p共纯化。在配体覆盖分析和交联研究中,白色念珠菌Rho1p被证明可直接与白色念珠菌Gsc1p相互作用。这些结果表明,白色念珠菌Rho1p与酿酒酵母Rho1p以相同方式调控β-1,3-葡聚糖合成。