Insulin activates intracellular transport of lipid droplets to release triglycerides from the liver

Author:

Kumar Mukesh1,Ojha Srikant1,Rai Priyanka1,Joshi Alaumy2,Kamat Siddhesh S.2ORCID,Mallik Roop1ORCID

Affiliation:

1. Department of Biological Sciences, Tata Institute of Fundamental Research, Mumbai, India

2. Department of Biology, Indian Institute of Science Education and Research, Pune, India

Abstract

Triglyceride-rich lipid droplets (LDs) are catabolized with high efficiency in hepatocytes to supply fatty acids for producing lipoprotein particles. Fasting causes a massive influx of adipose-derived fatty acids into the liver. The liver in the fasted state is therefore bloated with LDs but, remarkably, still continues to secrete triglycerides at a constant rate. Here we show that insulin signaling elevates phosphatidic acid (PA) dramatically on LDs in the fed state. PA then signals to recruit kinesin-1 motors, which transport LDs to the peripherally located smooth ER inside hepatocytes, where LDs are catabolized to produce lipoproteins. This pathway is down-regulated homeostatically when fasting causes insulin levels to drop, thus preventing dangerous elevation of triglycerides in the blood. Further, we show that a specific peptide against kinesin-1 blocks triglyceride secretion without any apparent deleterious effects on cells. Our work therefore reveals fundamental mechanisms that maintain lipid homeostasis across metabolic states and leverages this knowledge to propose a molecular target against hyperlipidemia.

Funder

Department of Atomic Energy, Government of India

Wellcome Trust

DBT India Alliance

Department of Science & Technology-Fund for Improvement of S&T Infrastructure in Universities & Higher Educational Institutions

Publisher

Rockefeller University Press

Subject

Cell Biology

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