首页> 美国政府科技报告 >Different Small, Acid-Soluble Proteins of the Alpha/Beta Type Have Interchangeable Roles in the Heat and UV (Ultraviolet) Radiation Resistance of 'Bacillus subtilis' Spores
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Different Small, Acid-Soluble Proteins of the Alpha/Beta Type Have Interchangeable Roles in the Heat and UV (Ultraviolet) Radiation Resistance of 'Bacillus subtilis' Spores

机译:不同的α/β型小酸溶蛋白在'枯草芽孢杆菌'孢子的热和紫外(紫外线)辐射抗性中具有可互换的作用

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Spores of Bacillus subtilis strains which carry deletion mutations in one gene (sspA) or two genes (sspA and sspB) which code for major alpha/beta-type small, acid-soluble spore proteins (SASP) are known to be much more sensitive to heat and UV radiation than wild-type spores. This heat- and UV-sensitive phenotype was cured completely or in part by introduction into these mutant strains of (i) one or more copies of the sspA or sspB genes themselves; (ii) multiple copies of the B. subtilis sspD gene, which codes for a minor alpha/beta-type SASP; or (iii) multiple copies of the SASP-C genes, which codes for a major alpha/beta-type SASP of Bacillus megaterium. These findings suggest that alpha-beta-type SASP play interchangeable roles in the heat and UV radiation resistance of bacterial spores.

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