首页> 美国卫生研究院文献>Journal of Bacteriology >Binding of DNA to alpha/beta-type small acid-soluble proteins from spores of Bacillus or Clostridium species prevents formation of cytosine dimers cytosine-thymine dimers and bipyrimidine photoadducts after UV irradiation.
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Binding of DNA to alpha/beta-type small acid-soluble proteins from spores of Bacillus or Clostridium species prevents formation of cytosine dimers cytosine-thymine dimers and bipyrimidine photoadducts after UV irradiation.

机译:DNA与芽孢杆菌或梭状芽孢杆菌属孢子的α/β型小酸可溶蛋白结合可防止紫外线照射后形成胞嘧啶二聚体胞嘧啶胸腺嘧啶二聚体和联嘧啶光加合物。

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摘要

Small, acid-soluble proteins (SASP) of the alpha/beta-type from spores of Bacillus and Clostridium species bind to DNA; this binding prevents formation of cyclobutane-type thymine dimers upon UV irradiation, but promotes formation of the spore photoproduct, an adduct between adjacent thymine residues. alpha/beta-Type SASP also bound to poly(dG).poly(dC) and poly(dA-dG).poly(dC-dT). While UV irradiation of poly(dG).poly(dC) produced cyclobutane-type cytosine dimers as well as fluorescent bipyrimidine adducts, the yields of both types of photoproduct were greatly reduced upon irradiation of alpha/beta-type SASP-poly(dG).poly(dC) complexes. UV irradiation of poly(dA-dG).poly(dC-dT) produced a significant amount of a cyclobutane dimer between cytosine and thymine, as well as a 6-4 bipyrimidine adduct. Again, binding of alpha/beta-type SASP to poly(dA-dG).poly(dC-dT) greatly reduced formation of these two photoproducts, although formation of the cytosine-thymine analog of the spore photoproduct was not observed. These data provide further evidence for the dramatic change in DNA structure and photoreactivity which takes place on binding of alpha/beta-type SASP and suggest that binding of these proteins to DNA in vivo prevents formation of most deleterious photoproducts upon UV irradiation.
机译:来自芽孢杆菌属和梭状芽胞杆菌属孢子的α/β型小酸溶性蛋白质(SASP)与DNA结合;这种结合阻止了紫外线照射下环丁烷型胸腺嘧啶二聚体的形成,但促进了孢子光产物的形成,即相邻胸腺嘧啶残基之间的加合物。 alpha / beta型SASP也绑定到poly(dG).poly(dC)和poly(dA-dG).poly(dC-dT)。虽然用紫外线辐照聚(dG)。聚(dC)会产生环丁烷型胞嘧啶二聚体和荧光联嘧啶加合物,但当照射α/β型SASP-聚(dG)时,两种类型的光产物的收率都会大大降低。 .poly(dC)复合体。聚(dA-dG)。聚(dC-dT)的紫外线照射在胞嘧啶和胸腺嘧啶之间产生了大量的环丁烷二聚体,以及6-4联嘧啶加合物。再次,尽管未观察到孢子光产物的胞嘧啶-胸腺嘧啶类似物形成,但是α/β型SASP与poly(dA-dG).poly(dC-dT)的结合大大减少了这两种光产物的形成。这些数据为结合α/β型SASP发生DNA结构和光反应性的剧烈变化提供了进一步的证据,并表明这些蛋白在体内与DNA的结合可防止紫外线照射后大多数有害光产物的形成。

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