Endothelial cell CD36 optimizes tissue fatty acid uptake

CD36 эндотелиальных клеток оптимизирует поглощение жирных кислот тканями
Nada A. Abumrad, Tenzin Lhakhang, Ira J. Goldberg, Shuiqing Yu, Kooresh I. Shoghi, Adam E. Mullick, Dmitri Samovski, Terri Pietka, Vivek S. Peche, Ni-Huiping Son, Debapriya Basu, Florian Willecke, Xiang Fang, Diego Scerbo, Hye Rim Chang, Fei Sun, Svetlana Bagdasarov, Konstantinos Drosatos, Steve T. Yeh, Namrata Gumaste, KyeongJin Kim, Lesley-Ann Huggins
2018-07-26

[11C]palmitate PETendothelial cell CD36fatty acid uptakeinsulin sensitivitylong-chain fatty acids
Movement of circulating fatty acids (FAs) to parenchymal cells requires their transfer across the endothelial cell (EC) barrier. The multiligand receptor cluster of differentiation 36 (CD36) facilitates tissue FA uptake and is expressed in ECs and parenchymal cells such as myocytes and adipocytes. Whether tissue uptake of FAs is dependent on EC or parenchymal cell CD36, or both, is unknown. Using a cell-specific deletion approach, we show that EC, but not parenchymal cell, CD36 deletion increased fasting plasma FAs and postprandial triglycerides. EC-Cd36-KO mice had reduced uptake of radiolabeled long-chain FAs into heart, skeletal muscle, and brown adipose tissue; these uptake studies were replicated using [11C]palmitate PET scans. High-fat diet-fed EC-CD36-deficient mice had improved glucose tolerance and insulin sensitivity. Both EC and cardiomyocyte (CM) deletion of CD36 reduced heart lipid droplet accumulation after fasting, but CM deletion did not affect heart glucose or FA uptake. Expression in the heart of several genes modulating glucose metabolism and insulin action increased with EC-CD36 deletion but decreased with CM deletion. In conclusion, EC CD36 acts as a gatekeeper for parenchymal cell FA uptake, with important downstream effects on glucose utilization and insulin action.
1
Despite impaired fatty-acid uptake, high-fat-diet-fed mice lacking endothelial CD36 showed improved glucose tolerance and insulin sensitivity.
2
Endothelial CD36 deletion increased fasting plasma fatty acids and postprandial triglycerides, while reducing long-chain fatty-acid uptake in heart, skeletal muscle, and brown adipose tissue.
3
Endothelial and cardiomyocyte CD36 deletion both reduced fasting-induced cardiac lipid droplets, but only endothelial deletion altered cardiac glucose-metabolism and insulin-action gene expression and improved glucose-related outcomes.
4
Endothelial-cell CD36, rather than parenchymal-cell CD36, is required for efficient tissue fatty-acid uptake.
5
Reduced tissue fatty-acid uptake after endothelial CD36 deletion was confirmed using radiolabeled fatty acids and [11C]palmitate PET imaging.

Endothelial-cell CD36-mediated fatty acid transfer to parenchymal tissues in mice

The role of endothelial versus parenchymal-cell CD36 in regulating tissue fatty acid uptake and downstream glucose metabolism and insulin sensitivity

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2018-07-26
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Authors
Nada A. Abumrad
Tenzin Lhakhang
Ira J. Goldberg
Shuiqing Yu
Kooresh I. Shoghi
Adam E. Mullick
Dmitri Samovski
Terri Pietka
Vivek S. Peche
Ni-Huiping Son
Debapriya Basu
Florian Willecke
Xiang Fang
Diego Scerbo
Hye Rim Chang
Fei Sun
Svetlana Bagdasarov
Konstantinos Drosatos
Steve T. Yeh
Namrata Gumaste
KyeongJin Kim
Lesley-Ann Huggins
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