The glucose metabolite methylglyoxal inhibits expression of the glucose transporter genes by inactivating the cell surface glucose sensors Rgt2 and Snf3 in yeast


Journal article


Adhiraj Roy, S. Hashmi, Zerui Li, Angela D. Dement, Kyu Hong Cho, Jeong‐Ho Kim
Molecular Biology of the Cell, 2016

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APA   Click to copy
Roy, A., Hashmi, S., Li, Z., Dement, A. D., Cho, K. H., & Kim, J. H. (2016). The glucose metabolite methylglyoxal inhibits expression of the glucose transporter genes by inactivating the cell surface glucose sensors Rgt2 and Snf3 in yeast. Molecular Biology of the Cell.


Chicago/Turabian   Click to copy
Roy, Adhiraj, S. Hashmi, Zerui Li, Angela D. Dement, Kyu Hong Cho, and Jeong‐Ho Kim. “The Glucose Metabolite Methylglyoxal Inhibits Expression of the Glucose Transporter Genes by Inactivating the Cell Surface Glucose Sensors Rgt2 and Snf3 in Yeast.” Molecular Biology of the Cell (2016).


MLA   Click to copy
Roy, Adhiraj, et al. “The Glucose Metabolite Methylglyoxal Inhibits Expression of the Glucose Transporter Genes by Inactivating the Cell Surface Glucose Sensors Rgt2 and Snf3 in Yeast.” Molecular Biology of the Cell, 2016.


BibTeX   Click to copy

@article{adhiraj2016a,
  title = {The glucose metabolite methylglyoxal inhibits expression of the glucose transporter genes by inactivating the cell surface glucose sensors Rgt2 and Snf3 in yeast},
  year = {2016},
  journal = {Molecular Biology of the Cell},
  author = {Roy, Adhiraj and Hashmi, S. and Li, Zerui and Dement, Angela D. and Cho, Kyu Hong and Kim, Jeong‐Ho}
}

Abstract

Methylglyoxal (MG) is a cytotoxic by-product of glycolysis. MG inhibits the growth of glucose-fermenting yeast cells by inhibiting glycolysis. MG does so by inducing endocytosis and degradation of the cell-surface glucose sensors Rgt2 and Snf3, which are required for glucose induction of HXT (glucose transporter) gene expression.