首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Novel group VII histidine kinase HwHhk7B from the halophilic fungi Hortaea werneckii has a putative role in osmosensing.
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Novel group VII histidine kinase HwHhk7B from the halophilic fungi Hortaea werneckii has a putative role in osmosensing.

机译:来自嗜盐真菌Hortaea werneckii的新型VII组氨酸组氨酸激酶HwHhk7B在渗透压中具有假定的作用。

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摘要

Histidine kinases (HKs) are abundant among prokaryotes and have been characterized in fungi and plants, although not yet in animals. These enzymes regulate diverse processes, including adaptation to osmotic stress and virulence of plant and animal pathogens. Here, we report the cloning, characterization and phylogenetic analysis of HwHHK7A and HwHHK7B, HK genes from the fungi Hortaea werneckii, a proposed model system for studying salt tolerance in eukaryotes. The two HwHhk7 isoforms are 96.7% identical in amino-acid sequence and have a typical eukaryotic hybrid HK domain composition. On the bases of the conserved sequence of the H box, they are classified into the group VII ascomycete HKs. For the HwHhk7B protein, the autokinase activity was demonstrated in vitro. The salt-responsive expression of the HwHHK7 genes and the increased osmotolerance of a wild-type Saccharomyces cerevisiae strain expressing the HwHHK7B gene lead us to speculate that these newly identified HKs have roles in osmosensing.
机译:组氨酸激酶(HKs)在原核生物中含量很高,并已在真菌和植物中表征,尽管在动物中尚未发现。这些酶调节多种过程,包括适应渗透压和动植物病原体的毒性。在这里,我们报告的HwHHK7A和HwHHK7B,来自真菌Hortaea werneckii的HK基因的克隆,鉴定和系统发育分析,该模型是研究真核生物耐盐性的拟议模型系统。这两个HwHhk7同工型的氨基酸序列相同,为96.7%,具有典型的真核杂交HK结构域组成。根据H盒的保守序列,将它们分类为第VII组子囊HKs。对于HwHhk7B蛋白,在体外证明了自身激酶活性。 HwHHK7基因的盐反应性表达和表达HwHHK7B基因的野生型酿酒酵母菌株的渗透压增加导致我们推测这些新近鉴定的HK在渗透压中起作用。

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