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Applied Microbiology and Biotechnology|February 21, 2020
Efficient xylose utilization leads to highest lipid productivity in Candida tropicalis SY005 among six yeast strains grown in mixed sugar mediumAtrayee Chattopadhyay, Mrinal K MaitiAdvances in Applied Microbiology|August 6, 2021
Lipid production by oleaginous yeastsAtrayee Chattopadhyay, Mrinal K MaitiApplied Microbiology and Biotechnology|August 22, 2020
Engineering an oleaginous yeast Candida tropicalis SY005 for enhanced lipid productionAtrayee Chattopadhyay, Anuja Gupta, Mrinal K MaitiBiotechnology Advances|February 25, 2021
Recent advances in lipid metabolic engineering of oleaginous yeastsAtrayee Chattopadhyay, Mohor Mitra, Mrinal K MaitiVitamins and Hormones|March 17, 2025
Understanding xylose transport in yeastsAtrayee Chattopadhyay, Mohor Mitra, Mrinal K MaitiArchives of Biochemistry and Biophysics|October 30, 2020
Characterization of two sugar transporters responsible for efficient xylose uptake in an oleaginous yeast Candida tropicalis SY005Atrayee Chattopadhyay, Rashika Singh, Amit K Das, et al.Current Atherosclerosis Reports|March 13, 2023
New CRISPR Technology for Creating Cell Models of Lipoprotein Assembly and SecretionNarasimha Anaganti, Atrayee Chattopadhyay, Mathilde Di Filippo, et al.Journal of Lipid Research|August 5, 2022
Generation of hepatoma cell lines deficient in microsomal triglyceride transfer proteinNarasimha Anaganti, Atrayee Chattopadhyay, John T Poirier, et al.Plos One|November 7, 2014
Enhancement of lipid productivity in oleaginous Colletotrichum fungus through genetic transformation using the yeast CtDGAT2b gene under model-optimized growth conditionPrabuddha Dey, Nikunj Mall, Atrayee Chattopadhyay, et al.FEMS Yeast Research|March 26, 2015
A repressor activator protein1 homologue from an oleaginous strain of Candida tropicalis increases storage lipid production in Saccharomyces cerevisiaeAtrayee Chattopadhyay, Prabuddha Dey, Amita Barik, et al.Pageof 2