首页> 外文OA文献 >Ultraviolet irradiation of DNA complexed with alpha/beta-type small, acid-soluble proteins from spores of Bacillus or Clostridium species makes spore photoproduct but not thymine dimers.
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Ultraviolet irradiation of DNA complexed with alpha/beta-type small, acid-soluble proteins from spores of Bacillus or Clostridium species makes spore photoproduct but not thymine dimers.

机译:紫外线照射与芽孢杆菌或梭状芽孢杆菌属孢子中的α/β型小酸可溶蛋白复合的DNA,会产生孢子光产物,而不产生胸腺嘧啶二聚体。

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摘要

UV irradiation of complexes of DNA and an alpha/beta-type small, acid-soluble protein (SASP) from Bacillus subtilis spores gave decreasing amounts of pyrimidine dimers and increasing amounts of spore photoproduct as the SASP/DNA ratio was increased. The yields of pyrimidine dimers and spore photoproduct were less than 0.2% and 8% of total thymine, respectively, when DNA saturated with SASP was irradiated at 254 nm with 30 kJ/m2; in the absence of SASP the yields were reversed-4.5% and 0.3%, respectively. Complexes of DNA with alpha/beta-type SASP from Bacillus cereus, Bacillus megaterium, or Clostridium bifermentans spores also gave spore photoproduct upon UV irradiation. However, incubation of these SASPs with DNA under conditions preventing complex formation or use of mutant SASPs that do not form complexes did not affect the photoproducts formed in vitro. These results suggest that the UV photochemistry of bacterial spore DNA in vivo is due to the binding of alpha/beta-type SASP, a binding that is known to cause a change in DNA conformation in vitro from the B form to the A form. The yields of spore photoproduct in vitro were significantly lower than in vivo, perhaps because of the presence of substances other than SASP in spores. It is suggested that as these factors diffuse out in the first minutes of spore germination, spore photoproduct yields become similar to those observed for irradiation of SASP/DNA complexes in vitro.
机译:枯草芽孢杆菌孢子的DNA和α/β型小酸溶蛋白(SASP)的复合物的紫外线照射使嘧啶二聚体的量减少,并且随着SASP / DNA比的增加,孢子光产物的量也增加。当在254 nm处以30 kJ / m2照射SASP饱和的DNA时,嘧啶二聚体和孢子光产物的产率分别低于总胸腺嘧啶的0.2%和8%。在不存在SASP的情况下,产率分别相反,分别为4.5%和0.3%。 DNA与蜡状芽孢杆菌,巨大芽孢杆菌或双发酵梭菌孢子的α/β型SASP的复合物在紫外线照射下也产生了孢子光产物。但是,在防止复合物形成或使用不形成复合物的突变型SASP的条件下,将这些SASP与DNA孵育不会影响体外形成的光产物。这些结果表明,体内细菌孢子DNA的紫外光化学是由于α/β型SASP的结合,这种结合已知会导致体外DNA构象从B型变为A型。体外孢子光产物的产量显着低于体内,这可能是因为孢子中存在SASP以外的物质。提示随着这些因素在孢子萌发的最初几分钟内扩散,孢子光产物的产量变得与在体外辐照SASP / DNA复合物所观察到的相似。

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