首页> 美国卫生研究院文献>Journal of Bacteriology >Disruption of the serine proteinase gene (sep) in Aspergillus flavus leads to a compensatory increase in the expression of a metalloproteinase gene (mep20).
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Disruption of the serine proteinase gene (sep) in Aspergillus flavus leads to a compensatory increase in the expression of a metalloproteinase gene (mep20).

机译:黄曲霉中丝氨酸蛋白酶基因(sep)的破坏导致金属蛋白酶基因(mep20)表达的补偿性增加。

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摘要

The serine proteinase gene (sep) in Aspergillus flavus was disrupted by homologous recombination with a hygromycin resistance gene as the marker. The gene-disrupted mutant GR-2 contained a single-copy insertion of the marker gene and did not express the sep gene. Serine proteinase activity, 36-kDa protein labeled by 3H-diisopropylfluorophosphate, and immunologically detectable proteinase were not detected in the culture fluid of GR-2. Despite the absence of the serine proteinase, the total elastinolytic activity levels in the mutant and the wild-type A.flavus were comparable. Immunoblots revealed that the mutant secreted greater amounts of an elastinolytic metalloproteinase gene (mep20) product than did the wild type. Furthermore, mep20 mRNA levels, measured by RNase protection assay, in the mutant were higher than those in the wild type. Inhibition of the serine proteinase by Streptomyces subtilisin inhibitor (SSI) in the culture medium of wild-type A.flavus also resulted in an elevation of mep20 gene products. Although no serine proteinase activity could be detected, the level of elastinolytic activity of the SSI-treated culture was comparable to that of the control. Immunoblots revealed that the addition of SSI caused an elevation in the levels of metalloproteinase and its mRNA. These results suggest that the expression of the genes encoding serine and metalloproteinases are controlled by a common regulatory system and the fungus has a mechanism to sense the status of extracellular proteolytic activities.
机译:黄曲霉中的丝氨酸蛋白酶基因(sep)被潮霉素抗性基因作为标记的同源重组被破坏。破坏基因的突变体GR-2包含标记基因的单拷贝插入,并且不表达sep基因。在GR-2的培养液中未检测到丝氨酸蛋白酶活性,3H-二异丙基氟磷酸酯标记的36kDa蛋白和免疫学上可检测的蛋白酶。尽管不存在丝氨酸蛋白酶,但是突变体和野生型黄曲霉的总弹性蛋白酶活性水平相当。免疫印迹显示,该突变体比野生型分泌更多的弹性蛋白酶金属蛋白酶基因(mep20)产物。此外,突变体中通过核糖核酸酶保护试验测定的mep20 mRNA水平高于野生型。链霉菌枯草杆菌蛋白酶抑制剂(SSI)在野生型黄曲霉培养基中抑制丝氨酸蛋白酶也导致mep20基因产物升高。尽管未检测到丝氨酸蛋白酶活性,但经SSI处理的培养物的弹性蛋白酶活性水平与对照相当。免疫印迹显示,添加SSI会导致金属蛋白酶及其mRNA水平升高。这些结果表明,编码丝氨酸和金属蛋白酶的基因的表达受共同的调节系统控制,并且真菌具有检测细胞外蛋白水解活性状态的机制。

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