首页> 美国卫生研究院文献>Journal of Bacteriology >Interaction between DNA and alpha/beta-type small acid-soluble spore proteins: a new class of DNA-binding protein.
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Interaction between DNA and alpha/beta-type small acid-soluble spore proteins: a new class of DNA-binding protein.

机译:DNA与α/β型小酸可溶孢子蛋白之间的相互作用:一类新的DNA结合蛋白。

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摘要

DNA in spores of Bacillus and Clostridium species is associated with small, acid-soluble proteins (SASP) of the alpha/beta type; the presence of these proteins is a major factor in causing spore resistance to UV light, alpha/beta-type SASP did not bind to single-stranded DNA, single- or double-stranded RNA, or DNA-RNA hybrids in vitro. However, these proteins bound a variety of double-stranded DNAs and conferred protection against DNase cleavage. The binding of alpha/beta-type SASP to DNA saturated at a protein/DNA ratio (wt/wt) of 4:1 to 5:1, which is approximately 1 SASP per 4 bp. alpha/beta-type SASP-DNA interaction did not require divalent cations, was independent of pH between 6 and 8, and, for some SASP-DNA pairs, was relatively insensitive to salt up to 0.3 M. The relative affinity of alpha/beta-type SASP for different DNAs was poly(dG).poly(dC) greater than poly(dG-dC).poly(dG-dC) greater than plasmid pUC19 greater than poly(dA-dT).poly(dA-dT), with poly(dA).poly(dT) giving no detectable binding. This order in alpha/beta-type SASP-DNA affinities parallels the facility with which the DNAs adopt an A-like conformation, the conformation in alpha/beta-type SASP-DNA complexes. An oligo(dG).oligo(dC) of 12 bp was bound by alpha/beta-type SASP. While a 26-bp oligo(dG).oligo(dC) bound more tightly than the 12-mer, there was no significant increase in affinity for alpha/beta-type SASP with further increase in size of oligo(dG).oligo(dC). In contrast, binding of alpha/beta-type SASP to oligo(dA-dT).oligo(dA-dT) was minimal up to at least a 70-mer, and binding to poly(dA-dT).poly(dA-dT) was very cooperative. In addition to blocking DNase digestion, binding of alpha/beta-type SASP to DNA blocked (i) cleavage of the DNA backbone by hydroxyl radicals and orthophenanthroline-Cu2+, (ii) DNA cleavage by restriction enzymes, in particular those with specificity for GC-rich sequences; and (iii) in vitro transcription of some but not all genes. However, methylation of dG residues by dimethyl sulfate was not affected by alpha/beta-type SASP binding.
机译:芽孢杆菌属和梭状芽孢杆菌属的孢子中的DNA与α/β型小酸溶性蛋白质(SASP)有关;这些蛋白质的存在是引起孢子对紫外线的抵抗力的主要因素,α/β型SASP在体外不与单链DNA,单链或双链RNA或DNA-RNA杂种结合。但是,这些蛋白质结合了多种双链DNA,并赋予了针对DNase裂解的保护作用。 α/β型SASP与以4:1至5:1的蛋白质/ DNA比(wt / wt)饱和的DNA的结合,每4 bp大约1 SASP。 alpha / beta型SASP-DNA相互作用不需要二价阳离子,不依赖于6至8之间的pH值,并且对于某些SASP-DNA对,对高达0.3 M的盐相对不敏感。alpha/ beta的相对亲和力不同DNA的SASP类型是poly(dG).poly(dC)大于poly(dG-dC).poly(dG-dC)大于质粒pUC19大于poly(dA-dT).poly(dA-dT) ,其中poly(dA).poly(dT)没有可检测的绑定。此顺序在alpha / beta型SASP-DNA亲和力中与DNA采取A样构象的设施相似,即在alpha / beta型SASP-DNA复合物中的构象。 12 bp的oligo(dG).oligo(dC)通过alpha / beta型SASP结合。虽然26 bp的oligo(dG).oligo(dC)与12-mer结合得更紧密,但对oligo(dG).oligo()的大小进一步增加,对α/β型SASP的亲和力没有显着增加。 dc)。相比之下,α/β型SASP与oligo(dA-dT).oligo(dA-dT)的结合最小,至少达到70-mer,并且与poly(dA-dT).poly(dA- dT)非常合作。除了阻止DNase消化外,α/β型SASP与DNA的结合还阻止(i)羟基自由基和邻菲咯啉-Cu2 +对DNA骨架的切割,(ii)限制性内切酶(特别是对GC有特异性的酶)对DNA的切割。 -丰富的序列; (iii)部分而非全部基因的体外转录。但是,硫酸二甲酯对dG残基的甲基化不受α/β型SASP结合的影响。

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