<i>Arabidopsis</i> ALIX is required for the endosomal localization of the deubiquitinating enzyme AMSH3

Kamila Kalinowska(Technical University of Munich), Marie-Kristin Nagel(Technical University of Munich), Kaija Goodman(University of Wisconsin–Madison), Laura Cuyas(Centro Nacional de Biotecnología), Franziska Anzenberger(Technical University of Munich), Angela Alkofer(Technical University of Munich), Javier Paz‐Ares(Centro Nacional de Biotecnología), Pascal Falter‐Braun(Technical University of Munich), Vicente Rubio(Centro Nacional de Biotecnología), Marisa S. Otegui(University of Wisconsin–Madison), Erika Isono(Technical University of Munich)
Proceedings of the National Academy of Sciences
August 31, 2015
Cited by 71

Abstract

Ubiquitination is a signal for various cellular processes, including for endocytic degradation of plasma membrane cargos. Ubiquitinating as well as deubiquitinating enzymes (DUBs) can regulate these processes by modifying the ubiquitination status of target protein. Although accumulating evidence points to the important regulatory role of DUBs, the molecular basis of their regulation is still not well understood. Associated molecule with the SH3 domain of signal transduction adaptor molecule (STAM) (AMSH) is a conserved metalloprotease DUB in eukaryotes. AMSH proteins interact with components of the endosomal sorting complex required for transport (ESCRT) and are implicated in intracellular trafficking. To investigate how the function of AMSH is regulated at the cellular level, we carried out an interaction screen for the Arabidopsis AMSH proteins and identified the Arabidopsis homolog of apoptosis-linked gene-2 interacting protein X (ALIX) as a protein interacting with AMSH3 in vitro and in vivo. Analysis of alix knockout mutants in Arabidopsis showed that ALIX is essential for plant growth and development and that ALIX is important for the biogenesis of the vacuole and multivesicular bodies (MVBs). Cell biological analysis revealed that ALIX and AMSH3 colocalize on late endosomes. Although ALIX did not stimulate AMSH3 activity in vitro, in the absence of ALIX, AMSH3 localization on endosomes was abolished. Taken together, our data indicate that ALIX could function as an important regulator for AMSH3 function at the late endosomes.


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