Khan S A, Griess G A, Serwer P
Department of Biochemistry, University of Texas Health Science Center, San Antonio 78284.
Biophys J. 1992 Nov;63(5):1286-92. doi: 10.1016/S0006-3495(92)81724-1.
To detect changes in capsid structure that occur when a preassembled bacteriophage T7 capsid both packages and cleaves to mature-size longer (concatameric) DNA, the kinetics and thermodynamics are determined here for the binding of the protein-specific probe, 1,1'-bi(4-anilino)naphthalene-5,5'-di-sulfonic acid (bis-ANS), to bacteriophage T7, a T7 DNA deletion (8.4%) mutant, and a DNA-free T7 capsid (metrizamide low density capsid II) known to be a DNA packaging intermediate that has a permeability barrier not present in a related capsid (metrizamide high density capsid II). Initially, some binding to either bacteriophage or metrizamide low density capsid II occurs too rapidly to quantify (phase 1, duration < 10 s). Subsequent binding (phase 2) occurs with first-order kinetics. Only the phase 1 binding occurs for metrizamide high density capsid II. These observations, together with both the kinetics of the quenching by ethidium of bound bis-ANS fluorescence and the nature of bis-ANS-induced protein alterations, are explained by the hypothesis that the phase 2 binding occurs at internal sites. The number of these internal sites increases as the density of the packaged DNA decreases. The accompanying change in structure is potentially the signal for initiating cleavage of a concatemer. Evidence for the following was also obtained: (a) a previously undetected packaging-associated change in the conformation of the major protein of the outer capsid shell and (b) partitioning by a permeability barrier of the interior of the T7 capsid.
为了检测预组装的噬菌体T7衣壳在包装并切割成成熟大小的较长(串联体)DNA时衣壳结构发生的变化,本文测定了蛋白质特异性探针1,1'-联(4-苯胺基)萘-5,5'-二磺酸(双-ANS)与噬菌体T7、T7 DNA缺失(8.4%)突变体以及已知为DNA包装中间体的无DNA T7衣壳(甲泛影酰胺低密度衣壳II)的结合动力学和热力学,该中间体具有相关衣壳(甲泛影酰胺高密度衣壳II)中不存在的渗透屏障。最初,与噬菌体或甲泛影酰胺低密度衣壳II的某些结合发生得太快以至于无法定量(阶段1,持续时间<10秒)。随后的结合(阶段2)以一级动力学发生。甲泛影酰胺高密度衣壳II仅发生阶段1的结合。这些观察结果,连同结合的双-ANS荧光被溴化乙锭淬灭的动力学以及双-ANS诱导的蛋白质改变的性质,都通过阶段2结合发生在内部位点的假设得到了解释。这些内部位点的数量随着包装DNA密度的降低而增加。伴随的结构变化可能是启动串联体切割的信号。还获得了以下证据:(a)外衣壳壳主要蛋白质构象中先前未检测到的与包装相关的变化,以及(b)T7衣壳内部被渗透屏障分隔。