Ambra1 at a glance

Author:

Cianfanelli Valentina12,De Zio Daniela13,Di Bartolomeo Sabrina23,Nazio Francesca23,Strappazzon Flavie23,Cecconi Francesco123

Affiliation:

1. Unit of Cell stress and survival, Danish Cancer Society Research Center, 2100 Copenhagen, Denmark

2. IRCCS Fondazione, Santa Lucia, 00143 Rome, Italy

3. Department of Biology, University of Rome Tor Vergata, 00133 Rome, Italy

Abstract

ABSTRACT The activating molecule in Beclin-1-regulated autophagy (Ambra1), also known as autophagy/Beclin-1 regulator 1, is a highly intrinsically disordered and vertebrate-conserved adapter protein that is part of the autophagy signaling network. It acts in an early step of mammalian target of rapamycin complex 1 (mTORC1)-dependent autophagy by favouring formation of the autophagosome core complex. However, recent studies have revealed that Ambra1 can also coordinate a cell response upon starvation or other stresses that involve translocation of the autophagosome core complex to the endoplasmic reticulum (ER), regulative ubiquitylation and stabilization of the kinase ULK1, selective mitochondria removal and cell cycle downregulation. Moreover, Ambra1 itself appears to be targeted by a number of regulatory processes, such as cullin-dependent degradation, caspase cleavage and several modifications, ranging from phosphorylation to ubiquitylation. Altogether, this complex network of regulation highlights the importance of Ambra1 in crucial physiological events, including metabolism, cell death and cell division. In addition, Ambra1 is an important regulator of embryonic development, and its mutation or inactivation has been shown to correlate with several pathologies of the nervous system and to be involved in carcinogenesis. In this Cell Science at a Glance article and the accompanying poster, we discuss recent advances in the Ambra1 field, particularly the role of this pro-autophagic protein in cellular pathophysiology.

Publisher

The Company of Biologists

Subject

Cell Biology

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