Miersch J, Grancharov K
Institute of Biochemistry, Martin-Luther-University, Halle, Germany.
Amino Acids. 2008 Feb;34(2):271-7. doi: 10.1007/s00726-006-0491-y. Epub 2007 Feb 14.
Induction of heat shock protein (Hsp) 70 and distinct metallothionein-like proteins (MTLPs) in response to Cd and heat treatment were studied in two strains of the aquatic hyphomycete Heliscus lugdunensis: Hl-H4, isolated from a heavy metal polluted site, and Hl-BB taken from an unpolluted area. Upon Cd-exposure, Hsp70 was actively synthesized in the strain Hl-H4, and to a much lower degree in the strain Hl-BB. The Hsp70-expression was time- and dose-dependent, reaching a maximum after 24 h incubation with 80 microM Cd. Upon heat-stress, a similar response was observed: a strong Hsp70-expression in Hl-H4, and only a marginal one in Hl-BB. The strains reacted to Cd-exposure by a specific, environmentally related induction of MTLPs, as shown by the highly sensitive bimane derivatisation method of SH-rich proteins. In Hl-H4, a strong expression of 11 kDa MTLP was registered, which followed strictly the induction pattern of Hsp70. This suggests interdependence of the induction mechanisms and roles of these stress proteins in metal resistance. On the contrary, in Hl-BB a weak expression of MTLP of about 20 kDa was observed, exhibiting completely different induction pattern. The results suggest that the specific induction of Hsp70 and/or distinct MTLPs in the range of 11 kDa in H. lugdunensis strain Hl-H4 are essential adaptive mechanisms to continuous heavy metal exposure.
在两种水生丝状真菌卢氏梨孢菌(Heliscus lugdunensis)菌株中,研究了热休克蛋白(Hsp)70和不同的类金属硫蛋白(MTLPs)对镉和热处理的响应:从重金属污染位点分离的Hl-H4菌株,以及来自未污染区域的Hl-BB菌株。暴露于镉后,Hsp70在Hl-H4菌株中被积极合成,而在Hl-BB菌株中的合成程度要低得多。Hsp70的表达呈时间和剂量依赖性,在与80 microM镉孵育24小时后达到最大值。在热应激下,观察到类似的反应:Hl-H4中Hsp70强烈表达,而Hl-BB中只有少量表达。通过富含SH蛋白的高灵敏度双硫腙衍生化方法表明,这些菌株通过与环境相关的特定MTLPs诱导对镉暴露做出反应。在Hl-H4中,记录到11 kDa MTLP的强烈表达,其严格遵循Hsp70的诱导模式。这表明这些应激蛋白的诱导机制和在金属抗性中的作用相互依赖。相反,在Hl-BB中观察到约20 kDa的MTLP弱表达,表现出完全不同的诱导模式。结果表明,卢氏梨孢菌Hl-H4菌株中Hsp70和/或11 kDa范围内不同MTLPs的特异性诱导是对持续重金属暴露的重要适应性机制。