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Heat hydrogen peroxide and UV resistance of Bacillus subtilis spores with increased core water content and with or without major DNA-binding proteins.

机译:枯草芽孢杆菌孢子的耐热性过氧化氢性和抗紫外线性其核心水分含量增加并且带有或不带有主要的DNA结合蛋白。

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摘要

Spores of a Bacillus subtilis strain with an insertion mutation in the dacB gene, which codes for an enzyme involved in spore cortex biosynthesis, have a higher core water content than wild-type spores. Spores lacking the two major alpha/beta-type small, acid-soluble proteins (SASP) (termed alpha-beta- spores) have the same core water content as do wild-type spores, but alpha-beta- dacB spores had more core water than did dacB spores. The resistance of alpha-beta-, alpha-beta- dacB, dacB, and wild-type spores to dry and moist heat, hydrogen peroxide, and UV radiation has been determined, as has the role of DNA damage in spore killing by moist heat and hydrogen peroxide. These data (i) suggest that core water content has little if any role in spore UV resistance and are consistent with binding of alpha/beta-type SASP to DNA being the major mechanism providing protection to spores from UV radiation; (ii) suggest that binding of alpha/beta-type SASP to DNA is the major mechanism unique to spores providing protection from dry heat; (iii) suggest that spore resistance to moist heat and hydrogen peroxide is affected to a large degree by the core water content, as increased core water resulted in large decreases in spore resistance to these agents; and (iv) indicate that since this decreased resistance (i.e., in dacB spores) is not associated with increased spore killing by DNA damage, spore DNA must normally be extremely well protected against such damage, presumably by the saturation of spore DNA by alpha/beta-type SASP.
机译:在dacB基因中具有插入突变的枯草芽孢杆菌菌株的孢子,其编码参与孢子皮层生物合成的酶,其核心含水量比野生型孢子高。缺少两种主要的α/β型小酸溶性蛋白质(SASP)(称为α-β-孢子)的孢子具有与野生型孢子相同的核心含水量,但是α-β-dacB孢子具有更多的核心水比dacB孢子多。已经确定了α-β-,α-β-dacB,dacB和野生型孢子对干燥和湿热,过氧化氢和紫外线辐射的抵抗力,以及DNA损伤在湿热杀死孢子中的作用和过氧化氢。这些数据(i)表明核心水含量几乎没有影响孢子的紫外线,并且与α/β型SASP与DNA的结合是一致的,这是保护孢子免受紫外线辐射的主要机制; (ii)暗示α/β型SASP与DNA的结合是孢子独有的主要机制,可提供免受干热的保护; (iii)提出,由于水分增加,导致孢子对这些药剂的抵抗力大大降低,因此孢子对湿热和过氧化氢的抵抗力在很大程度上受到核心水分的影响。 (iv)指出,由于这种降低的抗性(即在dacB孢子中)与DNA损伤所致的增加的孢子杀伤率无关,因此,通常必须极好地保护孢子DNA免受此类损伤,大概是因为α/ beta型SASP。

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