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通过溴化乙锭的共价连接抑制聚(dGdC)·聚(dGdC)中B型向Z型的转变:平衡研究

Inhibition of the B to Z transition in poly(dGdC).poly(dGdC) by covalent attachment of ethidium: equilibrium studies.

作者信息

Gilbert P L, Graves D E, Chaires J B

机构信息

Department of Chemistry, University of Mississippi, University 38677.

出版信息

Biochemistry. 1991 Nov 12;30(45):10925-31. doi: 10.1021/bi00109a017.

Abstract

The effects of covalent modification of poly(dGdC).poly(dGdC) and poly(dGm5dC).poly(dGm5dC) by ethidium monoazide (a photoreactive analogue of ethidium) on the salt-induced B to Z transition are examined. Earlier studies have shown ethidium monoazide to bind DNA (in the absence of light) in a manner identical to that of the parent ethidium bromide. Photolysis of the ethidium monoazide-DNA complex with visible light results in the covalent attachment of the photoreactive analogue to the DNA. This ability to form a covalent adduct was utilized to probe the effects of an intercalating irreversibly bound adduct on the salt-induced B to Z transition of the poly(dGdC).poly(dGdC) and poly(dGm5dC).poly(dGm5dC) polynucleotides. In the absence of drug, the salt-induced transition from the B to Z structure occurs in a highly cooperative manner. In contrast, this cooperativity is diminished as the concentration of covalently attached drug is increased. The degree of inhibition of the B to Z transition is quantitated as a function of the concentration of covalently attached drug. At a concentration of one drug bound per four base pairs for poly(dGdC).poly(dGdC) and seven base pairs for poly(dGm5dC).poly(dGm5dC), total inhibition of this transition is achieved. Lower concentrations of bound drug were effective in the partial inhibition of this transition. The effects of the covalently bound intercalator on the energetics of the B to Z transition were determined and demonstrated that the adduct is effective in locking the alternating copolymer in a right-handed conformation under high salt conditions.

摘要

研究了单叠氮乙锭(乙锭的一种光反应类似物)对聚(dGdC)·聚(dGdC)和聚(dGm5dC)·聚(dGm5dC)的共价修饰对盐诱导的B型到Z型转变的影响。早期研究表明,单叠氮乙锭在(无光条件下)与DNA的结合方式与母体溴化乙锭相同。用可见光对单叠氮乙锭 - DNA复合物进行光解会导致光反应类似物与DNA共价连接。利用这种形成共价加合物的能力来探究不可逆结合的嵌入加合物对聚(dGdC)·聚(dGdC)和聚(dGm5dC)·聚(dGm5dC)多核苷酸盐诱导的B型到Z型转变的影响。在没有药物的情况下,盐诱导的从B型到Z型结构的转变以高度协同的方式发生。相比之下,随着共价连接药物浓度的增加,这种协同性会降低。B型到Z型转变的抑制程度作为共价连接药物浓度的函数进行定量。对于聚(dGdC)·聚(dGdC),每四个碱基对结合一种药物,对于聚(dGm5dC)·聚(dGm5dC),每七个碱基对结合一种药物时,可实现该转变的完全抑制。较低浓度的结合药物对该转变有部分抑制作用。确定了共价结合的嵌入剂对B型到Z型转变能量学的影响,并证明该加合物在高盐条件下有效地将交替共聚物锁定在右手构象中。

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