Bujnicki J M
Molecular Biology Research Program, Henry Ford Health System, One Ford Place, Suite 5D Detroit, MI 48202, USA.
In Silico Biol. 1999;1(4):175-82.
Phylogenetic analysis of the S-adenosyl-L-methionine-dependent methyltransferases was performed based on similarity of positions of main chain alpha-carbon atoms in published structures of members of this superfamily. The evolutionary tree was inferred and the problem of mono/polyphyletic origin of DNA methyltransferases from the Rossmann-fold enzymes was solved, bridging two seemingly antithetical hypotheses. The comparison of protein structures provides evidence for an evolutionary link between widely diverged subfamilies of RNA and DNA N6-adenine methyltransferases and argues against the close homology of N6-adenine and N4-cytosine methyltransferases, apparent from biochemical data and comparison of fragments of sequences. Such evolutionary analysis of methyltransferases has never been published yet in the literature and will guide further phylogenetical studies based on both sequence and structure comparison.
基于该超家族成员已发表结构中主链α-碳原子位置的相似性,对S-腺苷-L-甲硫氨酸依赖性甲基转移酶进行了系统发育分析。推断出进化树,解决了罗斯曼折叠酶中DNA甲基转移酶单系/多系起源的问题,弥合了两个看似对立的假设。蛋白质结构的比较为RNA和DNA N6-腺嘌呤甲基转移酶广泛分化的亚家族之间的进化联系提供了证据,并反驳了从生化数据和序列片段比较中明显看出的N6-腺嘌呤和N4-胞嘧啶甲基转移酶的密切同源性。这种甲基转移酶的进化分析在文献中尚未发表,将指导基于序列和结构比较的进一步系统发育研究。