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Polymerization in the actin ATPase clan regulates hexokinase activity in yeast.


ABSTRACT: The actin fold is found in cytoskeletal polymers, chaperones, and various metabolic enzymes. Many actin-fold proteins, such as the carbohydrate kinases, do not polymerize. We found that Glk1, a Saccharomyces cerevisiae glucokinase, forms two-stranded filaments with ultrastructure that is distinct from that of cytoskeletal polymers. In cells, Glk1 polymerized upon sugar addition and depolymerized upon sugar withdrawal. Polymerization inhibits enzymatic activity; the Glk1 monomer-polymer equilibrium sets a maximum rate of glucose phosphorylation regardless of Glk1 concentration. A mutation that eliminated Glk1 polymerization alleviated concentration-dependent enzyme inhibition. Yeast containing nonpolymerizing Glk1 were less fit when growing on sugars and more likely to die when refed glucose. Glk1 polymerization arose independently from other actin-related filaments and may allow yeast to rapidly modulate glucokinase activity as nutrient availability changes.

SUBMITTER: Stoddard PR 

PROVIDER: S-EPMC7846450 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Polymerization in the actin ATPase clan regulates hexokinase activity in yeast.

Stoddard Patrick R PR   Lynch Eric M EM   Farrell Daniel P DP   Dosey Annie M AM   DiMaio Frank F   Williams Tom A TA   Kollman Justin M JM   Murray Andrew W AW   Garner Ethan C EC  

Science (New York, N.Y.) 20200201 6481


The actin fold is found in cytoskeletal polymers, chaperones, and various metabolic enzymes. Many actin-fold proteins, such as the carbohydrate kinases, do not polymerize. We found that Glk1, a <i>Saccharomyces cerevisiae</i> glucokinase, forms two-stranded filaments with ultrastructure that is distinct from that of cytoskeletal polymers. In cells, Glk1 polymerized upon sugar addition and depolymerized upon sugar withdrawal. Polymerization inhibits enzymatic activity; the Glk1 monomer-polymer eq  ...[more]

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