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Functional Diversification of Maize RNA Polymerase IV and V Subtypes via Alternative Catalytic Subunits

机译:通过替代催化亚基的玉米RNA聚合酶IV和V亚型的功能多样化

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摘要

Unlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are conserved throughout eukaryotes, plant RNA polymerases IV and V are nonessential, Pol II-related enzymes whose subunit compositions are still evolving. Whereas Arabidopsis Pols IV and V differ from Pol II in four or five of their 12 subunits, respectively, and differ from one another in three subunits, proteomic analyses show that maize Pols IV and V differ from Pol II in six subunits but differ from each other only in their largest subunits. Use of alternative catalytic second subunits, which are nonredundant for development and paramutation, yields at least two subtypes of Pol IV and three subtypes of Pol V in maize. Pol IV/Pol V associations with MOP1, RMR1, AGO121, Zm.
机译:与核多管RNA聚合酶I,II和III不同,其亚基组合物在整个真核生物中保守,植物RNA聚合酶IV和V是非必要的POL II相关酶,其亚基组合物仍在发展。据rabidopsis pols iv和v分别不同于6个或五个亚基的Pol II,并且在三个亚基中彼此不同,蛋白质组学分析表明,玉米Pols IV和V在六个亚基中不同于Pol II,但不同其他仅在他们最大的亚基中。使用替代催化第二亚基,其具有不常见的发射和伸引,产生至少两种POL IV和玉米POL V亚型的亚型。 Pol IV / POL V与MOP1,RMR1,前121,ZM的关联。

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