Jeong-In Lee, Ph.D.

Affiliations: 
2006 Cornell University, Ithaca, NY, United States 
Area:
Nutrition, Biochemistry
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"Jeong-In Lee"
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Martha H. Stipanuk grad student 2006 Cornell
 (Nutritional regulation of glutamate -cysteine ligase: Effect of cysteine deprivation on enzyme subunit concentrations and activity state.)
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Publications

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Sikalidis AK, Mazor KM, Lee JI, et al. (2014) Upregulation of capacity for glutathione synthesis in response to amino acid deprivation: regulation of glutamate-cysteine ligase subunits. Amino Acids. 46: 1285-96
Sikalidis AK, Lee JI, Stipanuk MH. (2011) Gene expression and integrated stress response in HepG2/C3A cells cultured in amino acid deficient medium. Amino Acids. 41: 159-71
Lee JI, Dominy JE, Sikalidis AK, et al. (2008) HepG2/C3A cells respond to cysteine deprivation by induction of the amino acid deprivation/integrated stress response pathway. Physiological Genomics. 33: 218-29
Coloso RM, Hirschberger LL, Dominy JE, et al. (2006) Cysteamine dioxygenase: evidence for the physiological conversion of cysteamine to hypotaurine in rat and mouse tissues. Advances in Experimental Medicine and Biology. 583: 25-36
Stipanuk MH, Dominy JE, Lee JI, et al. (2006) Mammalian cysteine metabolism: new insights into regulation of cysteine metabolism. The Journal of Nutrition. 136: 1652S-1659S
Lee JI, Kang J, Stipanuk MH. (2006) Differential regulation of glutamate-cysteine ligase subunit expression and increased holoenzyme formation in response to cysteine deprivation. The Biochemical Journal. 393: 181-90
Lee JI, Londono M, Hirschberger LL, et al. (2004) Regulation of cysteine dioxygenase and gamma-glutamylcysteine synthetase is associated with hepatic cysteine level. The Journal of Nutritional Biochemistry. 15: 112-22
Cresenzi CL, Lee JI, Stipanuk MH. (2003) Cysteine is the metabolic signal responsible for dietary regulation of hepatic cysteine dioxygenase and glutamate cysteine ligase in intact rats. The Journal of Nutrition. 133: 2697-702
Stipanuk MH, Londono M, Lee JI, et al. (2002) Enzymes and metabolites of cysteine metabolism in nonhepatic tissues of rats show little response to changes in dietary protein or sulfur amino acid levels. The Journal of Nutrition. 132: 3369-78
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