Ncl1-mediated metabolic rewiring critical during metabolic stress

Author:

Bhat Ajay12ORCID,Chakraborty Rahul12,Adlakha Khushboo1,Agam Ganesh1ORCID,Chakraborty Kausik12ORCID,Sengupta Shantanu12ORCID

Affiliation:

1. Council of Scientific and Industrial Research—Institute of Genomics and Integrative Biology, New Delhi, India

2. Academy of Scientific and Innovative Research, Ghaziabad, India

Abstract

Nutritional limitation has been vastly studied; however, there is limited knowledge of how cells maintain homeostasis in excess nutrients. In this study, using yeast as a model system, we show that some amino acids are toxic at higher concentrations. With cysteine as a physiologically relevant example, we delineated the pathways/processes that are altered and those that are involved in survival in the presence of elevated levels of this amino acid. Using proteomics and metabolomics approach, we found that cysteine up-regulates proteins involved in amino acid metabolism, alters amino acid levels, and inhibits protein translation—events that are rescued by leucine supplementation. Through a comprehensive genetic screen, we show that leucine-mediated effect depends on a transfer RNA methyltransferase (NCL1), absence of which decouples transcription and translation in the cell, inhibits the conversion of leucine to ketoisocaproate, and leads to tricarboxylic acid cycle block. We therefore propose a role of NCL1 in regulating metabolic homeostasis through translational control.

Funder

Council of Scientific and Industrial Research

CARDIOMED: Centre for Cardiovascular and Metabolic Disease Research

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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