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热休克70基因在具有不同耐热性和致病性水平的荚膜组织胞浆菌菌株中差异表达。

Heat shock 70 gene is differentially expressed in Histoplasma capsulatum strains with different levels of thermotolerance and pathogenicity.

作者信息

Caruso M, Sacco M, Medoff G, Maresca B

机构信息

International Institute of Genetics and Biophysics, CNR, Naples, Italy.

出版信息

Mol Microbiol. 1987 Sep;1(2):151-8. doi: 10.1111/j.1365-2958.1987.tb00507.x.

Abstract

The response to heat shock has been examined in two strains of the dimorphic pathogenic fungus Histoplasma capsulatum, which differ considerably in thermotolerance and pathogenicity. The gene for the 70 kD heat shock protein (hsp70) was isolated using a Drosophila hsp70 gene to screen a cosmid library of the DNA from the temperature-sensitive Downs strain (low level of thermotolerance for mice). Using the cloned gene as a probe, we have measured the transcription of the endogenous hsp70 gene at 25 degrees C and in response to temperature shift to 34 degrees, 37 degrees and 40 degrees C, temperatures that trigger the mycelial to yeast phase transition in this fungus. The gene is constitutively transcribed at low levels, both in the yeast and the mycelial stages. Synthesis of hsp70 mRNA was transiently increased 1 to 3 h after the temperature shifts. By Northern analysis, peak levels of transcription were shown to occur at 34 degrees C in the Downs strain and at 37 degrees C in the more pathogenic G222B strain. Our results are consistent with reports in which it has been shown that heat shock gene expression is part of temperature adaptation and probably developmental processes. The low levels of transcription of the hsp70 gene in the Downs strain at 37 degrees C correlate with its greater temperature sensitivity and low level of virulence.

摘要

在两种双态致病真菌荚膜组织胞浆菌菌株中研究了对热休克的反应,这两种菌株在耐热性和致病性方面有很大差异。使用果蝇热休克蛋白70(hsp70)基因筛选来自温度敏感的唐斯菌株(对小鼠耐热性水平低)的DNA粘粒文库,分离出70kD热休克蛋白(hsp70)的基因。使用克隆基因作为探针,我们测量了内源hsp70基因在25℃时以及对温度转变至34℃、37℃和40℃(这些温度会触发该真菌的菌丝体到酵母相转变)时的转录情况。该基因在酵母和菌丝体阶段均以低水平组成性转录。温度转变后1至3小时,hsp70 mRNA的合成短暂增加。通过Northern分析,显示在唐斯菌株中34℃时转录达到峰值水平,在致病性更强的G222B菌株中37℃时转录达到峰值水平。我们的结果与已表明热休克基因表达是温度适应及可能是发育过程一部分的报道一致。唐斯菌株中hsp70基因在37℃时的低水平转录与其更高的温度敏感性和低毒力相关。

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