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Linear Chromosome-generating System of Agrobacterium tumefaciens C58

机译:根癌农杆菌C58的线性染色体产生系统

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摘要

Agrobacterium tumefaciens C58, the pathogenic bacteria that causes crown gall disease in plants, harbors one circular and one linear chromosome and two circular plasmids. The telomeres of its unusual linear chromosome are covalently closed hairpins. The circular and linear chromosomes co-segregate and are stably maintained in the organism. We have determined the sequence of the two ends of the linear chromosome thus completing the previously published genome sequence of A. tumefaciens C58. We found that the telomeres carry nearly identical 25-bp sequences at the hairpin ends that are related by dyad symmetry. We further showed that its Atu2523 gene encodes a protelomerase (resolvase) and that the purified enzyme can generate the linear chromosomal closed hairpin ends in a sequence-specific manner. Agrobacterium protelomerase, whose presence is apparently limited to biovar 1 strains, acts via a cleavage-and-religation mechanism by making a pair of transient staggered nicks invariably at 6-bp spacing as the reaction intermediate. The enzyme can be significantly shortened at both the N and C termini and still maintain its enzymatic activity. Although the full-length enzyme can uniquely bind to its product telomeres, the N-terminal truncations cannot. The target site can also be shortened from the native 50-bp inverted repeat to 26 bp; thus, the Agrobacterium hairpin-generating system represents the most compact activity of all hairpin linear chromosome- and plasmid-generating systems to date. The biochemical analyses of the protelomerase reactions further revealed that the tip of the hairpin telomere may be unusually polymorphically capable of accommodating any nucleotide.
机译:根癌农杆菌C58是引起植物冠gall病的致病细菌,具有一个圆环和一个线性染色体以及两个圆环质粒。其不寻常的线性染色体的端粒是共价闭合的发夹。圆形和线性染色体共同分离并稳定地保留在生物体中。我们已经确定了线性染色体两端的序列,从而完成了先前发表的根癌农杆菌C58的基因组序列。我们发现端粒在发夹末端带有几乎相同的25 bp序列,这些序列与dyad对称性相关。我们进一步表明,其Atu2523基因编码一个端粒酶(resolvase),并且纯化的酶可以以序列特异性的方式产生线性染色体闭合的发夹末端。农杆菌原核端粒酶的存在显然仅限于biovar 1菌株,它通过裂解和连接机制起作用,将一对瞬态交错的切口固定以6 bp的间隔不变地作为反应中间体。该酶可以在N和C末端显着缩短,并且仍保持其酶活性。尽管全长酶可以唯一地结合其产物端粒,但N端截短不能。目标位点也可以从天然的50 bp反向重复序列缩短到26 bp;因此,农杆菌发夹产生系统代表了迄今为止所有发夹线性染色体和质粒产生系统中最紧凑的活性。对原核端粒酶反应的生化分析进一步表明,发夹型端粒的末端可能具有异常多态的能力,可以容纳任何核苷酸。

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