Becker B, de la Fuente N, Gassel M, Günther D, Tavares P, Lurz R, Trautner T A, Alonso J C
Max-Planck-Institut für molekulare Genetik, Berlin, Federal Republic of Germany.
J Mol Biol. 1997 May 23;268(5):822-39. doi: 10.1006/jmbi.1997.0997.
We have identified and characterized the phage cistrons required for assembly of SPP1 heads. A DNA fragment containing most of the head morphogenesis genes was cloned and sequenced. The 3'-end of a previously identified gene (gene 6) and eight complete open reading frames (7 to 15) were predicted. We have assigned genes 7, 8, 9, 11, 12, 13, 14 and 15 to these orfs by correlating genetic and immunological data with DNA and protein sequence information. G7P was identified as a minor structural component of proheads and heads, G11P as the scaffold protein, G12P and G15P as head minor proteins and G13P as the coat protein. Characterization of intermediates in head assembly, which accumulate during infection with mutants deficient in DNA packaging or in morphogenetic genes, allowed the definition of the head assembly pathway. No proteolytic processing of any of the head components was detected. Removal of G11P by mutation leads to the accumulation of prohead-related structures and aberrant particles which are similar to the assemblies formed by purified G13P in the absence of other phage-encoded proteins. The native molecular masses of G11P and G13P are about 350 kDa and larger than 5000 kDa, respectively (predicted molecular masses 23.4 kDa and 35.3 kDa, respectively). G13P, upon denaturation and renaturation, assembles from protomers into some prohead-related structures. The organization of the DNA packaging and head genes of SPP1 resembles the organization of genes in the analogous regions of phage lambda and P22.
我们已经鉴定并表征了SPP1头部组装所需的噬菌体顺反子。克隆并测序了一个包含大部分头部形态发生基因的DNA片段。预测了一个先前鉴定基因(基因6)的3'末端和八个完整的开放阅读框(7至15)。通过将遗传和免疫学数据与DNA和蛋白质序列信息相关联,我们将基因7、8、9、11、12、13、14和15指定给这些开放阅读框。G7P被鉴定为原头部和头部的次要结构成分,G11P为支架蛋白,G12P和G15P为头部次要蛋白,G13P为衣壳蛋白。对头部组装中间体的表征(这些中间体在感染缺乏DNA包装或形态发生基因的突变体时积累),使得能够定义头部组装途径。未检测到任何头部成分的蛋白水解加工。通过突变去除G11P会导致原头部相关结构和异常颗粒的积累,这些结构和颗粒类似于在没有其他噬菌体编码蛋白的情况下由纯化的G13P形成的组装体。G11P和G13P的天然分子量分别约为350 kDa和大于5000 kDa(预测分子量分别为23.4 kDa和35.3 kDa)。G13P在变性和复性后,从原体组装成一些原头部相关结构。SPP1的DNA包装和头部基因的组织类似于噬菌体λ和P22类似区域中的基因组织。