Wang Z, Szaniszlo P J
Section of Molecular Genetics and Microbiology, School of Biological Sciences, The University of Texas at Austin, 78712, USA.
J Bacteriol. 2000 Feb;182(4):874-81. doi: 10.1128/JB.182.4.874-881.2000.
Class III chitin synthases are important for hyphal growth in some filamentous fungi but are not found in yeasts. Using a specific PCR product that encodes a portion of the class III chitin synthase of W. dermatitidis as a probe, we isolated the chitin synthase gene, WdCHS3, from this polymorphic melanized pathogen of humans. Northern blotting showed that WdCHS3 was highly expressed under stress conditions, such as the shift of cells to temperatures commensurate with infection, or to conditions that induce cellular morphogenesis in this fungus. Analysis of the 5' upstream sequence of WdCHS3 provided evidence for a negative regulatory element at between -780 and -1600 bp. Western blotting indicated that the production of the WdChs3p was temperature dependent and temporally regulated. Disruption of WdCHS3 in a wild-type strain and in two temperature-sensitive morphological mutants resulted in significantly reduced chitin synthase activities but did not obviously affect their morphologies, growth rates, chitin contents, or virulence. This paradox suggested that the contributions of the high levels of WdCHS3 gene expression and WdChs3p production in strains subjected to stress reside in unknown or unexamined parts of the life cycle of this ecologically poorly known member of the Fungi Imperfecti. Nonetheless, this report presents the first evidence that transcription of a chitin synthase gene is regulated by a negative regulatory element in its 5' upstream sequence.
III类几丁质合成酶对某些丝状真菌的菌丝生长很重要,但在酵母中未发现。我们使用编码皮炎芽生菌III类几丁质合成酶一部分的特异性PCR产物作为探针,从这种人类多态性黑化病原体中分离出几丁质合成酶基因WdCHS3。Northern印迹分析表明,WdCHS3在应激条件下高度表达,如将细胞转移到与感染相应的温度下,或转移到诱导该真菌细胞形态发生的条件下。对WdCHS3 5'上游序列的分析提供了在-780至-1600 bp之间存在负调控元件的证据。Western印迹表明,WdChs3p的产生是温度依赖性的且受时间调控。在野生型菌株和两个温度敏感型形态突变体中破坏WdCHS3导致几丁质合成酶活性显著降低,但并未明显影响它们的形态、生长速率、几丁质含量或毒力。这种矛盾表明,在受到应激的菌株中,高水平的WdCHS3基因表达和WdChs3p产生的作用存在于这种对生态了解甚少的半知菌类真菌生命周期中未知或未研究的部分。尽管如此,本报告首次证明几丁质合成酶基因的转录受其5'上游序列中的负调控元件调控。