The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of mono-, di- and trimethylation states on histone H3 via a distributive mechanism. This mechanism has been shown to be important for the regulation of the different H3K79 methylation states in yeast. Dot1 enzymes in yeast, Trypanosoma brucei (TbDot1A and TbDot1B, which methylate H3K76) and human (hDot1L) generate very divergent methylation patterns. To understand how these species-specific methylation patterns are generated, the methylation output of the Dot1 enzymes was compared by expressing them in yeast at various expression levels. Computational simulations based on these data showed that the Dot1 enzymes have highly distinct catalytic pro...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
DOT1 enzymes are conserved methyltransferases that catalyse the methylation of lysine 79 on histone ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...
Methylation of histone proteins plays a crucial role controlling genome activity. To understand how ...