首页> 外文期刊>Eukaryotic cell >Surface Hydrophobicity Changes of Two Candida albicans Serotype B mnn4Δ Mutants
【24h】

Surface Hydrophobicity Changes of Two Candida albicans Serotype B mnn4Δ Mutants

机译:两个白色念珠菌B型mnn4Δ突变体的表面疏水性变化

获取原文
           

摘要

Cell surface hydrophobicity (CSH) of Candida species enhances virulence by promoting adhesion to host tissues. Biochemical analysis of yeast cell walls has demonstrated that the most significant differences between hydrophobic and hydrophilic yeasts are found in the acid-labile fraction of Candida albicans phosphomannoprotein, suggesting that this fraction is important in the regulation of the CSH phenotype. The acid-labile fraction of C. albicans is unique among fungi, in that it is composed of an extended polymer of β-1,2-mannose linked to the acid-stable region of the N-glycan by a phosphodiester bond. C. albicans serotype A and B strains both contain a β-1,2-mannose acid-labile moiety, but only serotype A strains contain additional β-1,2-mannose in the acid-stable region. A knockout of the C. albicans homolog of the Saccharomyces cerevisiae MNN4 gene was generated in two serotype B C. albicans patient isolates by using homologous gene replacement techniques, with the anticipation that they would be deficient in the acid-labile fraction and, therefore, demonstrate perturbed CSH. The resulting mnn4Δ-deficient derivative has no detectable phosphate-linked β-1,2-mannose in its cell wall, and hydrophobicity is increased significantly under conditions that promote the hydrophilic phenotype. The mnn4Δ mutant also demonstrates an unanticipated perturbation in the acid-stable mannan fraction. The present study reports the first genetic knockout constructed in a serotype B C. albicans strain and represents an important step for dissecting the regulation of CSH.
机译: Candida 物种的细胞表面疏水性(CSH)通过促进与宿主组织的粘附来增强毒力。酵母细胞壁的生化分析表明,疏水酵母和亲水酵母之间的最显着差异是在白色念珠菌磷酸甘露糖蛋白的酸不稳定部分中发现的,这表明该部分在调节CSH中很重要表型。 C的酸不稳定部分。白色念珠菌在真菌中是独特的,它由β-1,2-甘露糖的延伸聚合物组成,该聚合物通过磷酸二酯键与 N -聚糖的酸稳定区相连。 C。白色念珠菌的血清型A和B菌株均含有β-1,2-甘露糖酸不稳定部分,但只有血清型A菌株在酸稳定区含有其他β-1,2-甘露糖。 C的敲除。在两个血清型B C中产生了酿酒酵母MNN4 基因的白色念珠菌同源物。白色念珠菌病患者通过使用同源基因替换技术分离出细菌,预期它们在酸不稳定部分中会缺乏,因此证明了CSH受到干扰。生成的 mnn4 Δ缺陷衍生物在其细胞壁中没有可检测到的磷酸酯连接的β-1,2-甘露糖,并且在促进亲水表型的条件下疏水性显着增加。 mnn4 Δ突变体还显示出对酸稳定的甘露聚糖组分的意外扰动。本研究报告了在血清型B C中构建的第一个基因敲除。白色念珠菌菌株,是解剖CSH调控的重要步骤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号