The Candida albicans Exocyst Subunit Sec6 Contributes to Cell Wall Integrity and Is a Determinant of Hyphal Branching.

Alba A Chavez-Dozal, Stella M Bernardo, Hallie S Rane, Gloria Herrera, Vibhati Kulkarny, Jeanette Wagener, Iain Cunningham, Alexandra C Brand, Neil A R Gow, Samuel A Lee
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引用次数: 14

Abstract

The yeast exocyst is a multiprotein complex comprised of eight subunits (Sec3, Sec5, Sec6, Sec8, Sec10, Sec15, Exo70, and Exo84) which orchestrates trafficking of exocytic vesicles to specific docking sites on the plasma membrane during polarized secretion. To study SEC6 function in Candida albicans, we generated a conditional mutant strain in which SEC6 was placed under the control of a tetracycline-regulated promoter. In the repressed state, the tetR-SEC6 mutant strain (denoted tSEC6) was viable for up to 27 h; thus, all phenotypic analyses were performed at 24 h or earlier. Strain tSEC6 under repressing conditions had readily apparent defects in cytokinesis and endocytosis and accumulated both post-Golgi apparatus secretory vesicles and structures suggestive of late endosomes. Strain tSEC6 was markedly defective in secretion of aspartyl proteases and lipases as well as filamentation under repressing conditions. Lack of SEC6 expression resulted in markedly reduced lateral hyphal branching, which requires the establishment of a new axis of polarized secretion. Aberrant localization of chitin at the septum and increased resistance to zymolyase activity were observed, suggesting that C. albicans Sec6 plays an important role in mediating trafficking and delivery of cell wall components. The tSEC6 mutant was also markedly defective in macrophage killing, indicating a role of SEC6 in C. albicans virulence. Taken together, these studies indicate that the late secretory protein Sec6 is required for polarized secretion, hyphal morphogenesis, and the pathogenesis of C. albicans.

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白色念珠菌胞囊亚基Sec6有助于细胞壁完整性,是菌丝分支的决定因素。
酵母外囊是由8个亚基(Sec3、Sec5、Sec6、Sec8、Sec10、Sec15、Exo70和Exo84)组成的多蛋白复合物,在极化分泌过程中协调外囊泡运输到质膜上的特定对接位点。为了研究SEC6在白色念珠菌中的功能,我们产生了一个条件突变株,其中SEC6置于四环素调节启动子的控制下。在抑制状态下,ter - sec6突变株(记为tSEC6)存活时间长达27小时;因此,所有表型分析均在24小时或更早进行。在抑制条件下,菌株tSEC6在胞质分裂和内吞作用方面有明显的缺陷,并积累了高尔基体后分泌囊泡和提示晚期内体的结构。在抑制条件下,菌株tSEC6在天冬氨酸蛋白酶和脂肪酶的分泌以及成丝方面明显缺陷。缺乏SEC6表达导致菌丝侧分枝明显减少,这需要建立新的极化分泌轴。观察到几丁质在隔膜的异常定位和对酶解酶活性的抗性增加,表明白色念珠菌Sec6在介导细胞壁成分的运输和递送中起重要作用。tSEC6突变体在巨噬细胞杀伤方面也有明显缺陷,表明SEC6在白色念珠菌毒力中的作用。综上所述,这些研究表明,晚期分泌蛋白Sec6是白色念珠菌极化分泌、菌丝形态发生和发病机制所必需的。
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Eukaryotic Cell
Eukaryotic Cell 生物-微生物学
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期刊介绍: Eukaryotic Cell (EC) focuses on eukaryotic microbiology and presents reports of basic research on simple eukaryotic microorganisms, such as yeasts, fungi, algae, protozoa, and social amoebae. The journal also covers viruses of these organisms and their organelles and their interactions with other living systems, where the focus is on the eukaryotic cell. Topics include: - Basic biology - Molecular and cellular biology - Mechanisms, and control, of developmental pathways - Structure and form inherent in basic biological processes - Cellular architecture - Metabolic physiology - Comparative genomics, biochemistry, and evolution - Population dynamics - Ecology
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