Evolution of protein kinase signaling from yeast to man

G Manning, GD Plowman, T Hunter… - Trends in biochemical …, 2002 - cell.com
Trends in biochemical sciences, 2002cell.com
Protein phosphorylation controls many cellular processes, especially those involved in
intercellular communication and coordination of complex functions. To explore the evolution
of protein phosphorylation, we compared the protein kinase complements ('kinomes') of
budding yeast, worm and fly, with known human kinases. We classify kinases into putative
orthologous groups with conserved functions and discuss kinase families and pathways that
are unique, expanded or lost in each lineage. Fly and human share several kinase families …
Abstract
Protein phosphorylation controls many cellular processes, especially those involved in intercellular communication and coordination of complex functions. To explore the evolution of protein phosphorylation, we compared the protein kinase complements (‘kinomes') of budding yeast, worm and fly, with known human kinases. We classify kinases into putative orthologous groups with conserved functions and discuss kinase families and pathways that are unique, expanded or lost in each lineage. Fly and human share several kinase families involved in immunity, neurobiology, cell cycle and morphogenesis that are absent from worm, suggesting that these functions might have evolved after the divergence of nematodes from the main metazoan lineage.
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