Gene duplication is an important driver for the evolution of new genes and protein functions. Duplication of DNA-dependent RNA polymerase (Pol) II subunits within plants led to the emergence of RNA Pol IV and V complexes, each of which possess unique functions necessary for RNA-directed DNA Methylation. Comprehensive identification of Pol V subunit orthologs across the monocot radiation revealed a duplication of the largest two subunits within the grasses (Poaceae), including critical cereal crops. These paralogous Pol subunits display sequence conservation within catalytic domains, but their carboxy terminal domains differ in length and character of the Ago-binding platform, suggesting unique functional interactions. Phylogenetic analysis ...
RNA Polymerases IV and V: Pol IV and Pol V) are plant-specific enzyme complexes with subunit homolog...
The plant-specific DNA-dependent RNA polymerase V (Pol V) evolved from Pol II to function in an RNA-...
Background: Poly(A) polymerase is a key enzyme in the machinery that mediates mRNA 3′ end formation ...
Gene duplication is an important driver for the evolution of new genes and protein functions. Duplic...
Gene evolution is one of the most significant contributors to the extensive number and diversity of ...
SummaryUnlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are co...
Multisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol II that...
Summary: Unlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are ...
In addition to RNA polymerases I, II and III, the essential RNA polymerases present in all eukaryote...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
SummaryUnlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are co...
Plants have acquired and maintained an expanded suite of DNA-dependent RNA polymerases (RNAPs) compa...
RNA Polymerases IV and V: Pol IV and Pol V) are plant-specific enzyme complexes with subunit homolog...
The plant-specific DNA-dependent RNA polymerase V (Pol V) evolved from Pol II to function in an RNA-...
Background: Poly(A) polymerase is a key enzyme in the machinery that mediates mRNA 3′ end formation ...
Gene duplication is an important driver for the evolution of new genes and protein functions. Duplic...
Gene evolution is one of the most significant contributors to the extensive number and diversity of ...
SummaryUnlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are co...
Multisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol II that...
Summary: Unlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are ...
In addition to RNA polymerases I, II and III, the essential RNA polymerases present in all eukaryote...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
SummaryUnlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are co...
Plants have acquired and maintained an expanded suite of DNA-dependent RNA polymerases (RNAPs) compa...
RNA Polymerases IV and V: Pol IV and Pol V) are plant-specific enzyme complexes with subunit homolog...
The plant-specific DNA-dependent RNA polymerase V (Pol V) evolved from Pol II to function in an RNA-...
Background: Poly(A) polymerase is a key enzyme in the machinery that mediates mRNA 3′ end formation ...