The lipid droplet-associated protein ABHD5 protects the heart through proteolysis of HDAC4

脂滴相关蛋白ABHD5通过HDAC4的蛋白水解作用保护心脏。

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作者:Zegeye H Jebessa ,Kumar D Shanmukha ,Matthias Dewenter ,Lorenz H Lehmann ,Chang Xu ,Friederike Schreiter ,Dominik Siede ,Xue-Min Gong ,Barbara C Worst ,Giuseppina Federico ,Sven W Sauer ,Tamas Fischer ,Lisa Wechselberger ,Oliver J Müller ,Samuel Sossalla ,Christoph Dieterich ,Patrick Most ,Herrmann-Josef Gröne ,Cedric Moro ,Monika Oberer ,Guenter Haemmerle ,Hugo A Katus ,Jens Tyedmers ,Johannes Backs

Abstract

Catecholamines stimulate the first step of lipolysis by PKA-dependent release of the lipid droplet-associated protein ABHD5 from perilipin to co-activate the lipase ATGL. Here, we unmask a yet unrecognized proteolytic and cardioprotective function of ABHD5. ABHD5 acts in vivo and in vitro as a serine protease cleaving HDAC4. Through the production of an N-terminal polypeptide of HDAC4 (HDAC4-NT), ABHD5 inhibits MEF2-dependent gene expression and thereby controls glucose handling. ABHD5-deficiency leads to neutral lipid storage disease in mice. Cardiac-specific gene therapy of HDAC4-NT does not protect from intra-cardiomyocyte lipid accumulation but strikingly from heart failure, thereby challenging the concept of lipotoxicity-induced heart failure. ABHD5 levels are reduced in failing human hearts and murine transgenic ABHD5 expression protects from pressure-overload induced heart failure. These findings represent a conceptual advance by connecting lipid with glucose metabolism through HDAC4 proteolysis and enable new translational approaches to treat cardiometabolic disease.

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