Abstract
Recent results have shown that autophagic sequestration in the human colon cancer cell line HT-29 is controlled by the pertussis toxin-sensitive heterotrimeric G(i3) protein. Here we show that transfection of an antisense oligodeoxynucleotide to the α(i3)-subunit markedly inhibits autophagic sequestration, whereas transfection of an antisense oligodeoxynucleotide to the α(i2)-subunit does not change the rate of autophagy in HT-29 cells. Autophagic sequestration was arrested in cells transfected with a mutant of the α(i3)-subunit (Q204L) that is restricted to the GTP-bound form. In Q204L-expressing cells, 3-methyladenine-sensitive degradation of long lived [14C]valine-labeled proteins was severely impaired and could not be stimulated by nutrient deprivation. Autophagy was also reduced when dissociation of the βγ dimer from the GTP-bound α(i3)-subunit was impaired in cells transfected with the G203A mutant. In contrast, a high rate of pertussis toxin-sensitive autophagy was observed in cells transfected with an α(i3)-subunit mutant (S47N) which has an increased guanine nucleotide exchange rate and increased preference for GDP over GTP. Cells that express pertussis toxin-insensitive mutants of either wild-type α(i3)-subunit (C351S) or S47N α(i3)-subunit (S47N/C351S) exhibit a high rate of autophagy.
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CITATION STYLE
Ogier-Denis, E., Houri, J. J., Bauvy, C., & Codogno, P. (1996). Guanine nucleotide exchange on heterotrimeric G(i3) protein controls autophagic sequestration in HT-29 cells. Journal of Biological Chemistry, 271(45), 28593–28600. https://doi.org/10.1074/jbc.271.45.28593
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