Literature DB >> 22645275

Identification of novel ATP13A2 interactors and their role in α-synuclein misfolding and toxicity.

Marija Usenovic1, Adam L Knight, Arpita Ray, Victoria Wong, Kevin R Brown, Guy A Caldwell, Kim A Caldwell, Igor Stagljar, Dimitri Krainc.   

Abstract

Lysosomes are responsible for degradation and recycling of bulky cell material, including accumulated misfolded proteins and dysfunctional organelles. Increasing evidence implicates lysosomal dysfunction in several neurodegenerative disorders, including Parkinson's disease and related synucleinopathies, which are characterized by the accumulation of α-synuclein (α-syn) in Lewy bodies. Studies of lysosomal proteins linked to neurodegenerative disorders present an opportunity to uncover specific molecular mechanisms and pathways that contribute to neurodegeneration. Loss-of-function mutations in a lysosomal protein, ATP13A2 (PARK9), cause Kufor-Rakeb syndrome that is characterized by early-onset parkinsonism, pyramidal degeneration and dementia. While loss of ATP13A2 function plays a role in α-syn misfolding and toxicity, the normal function of ATP13A2 in the brain remains largely unknown. Here, we performed a screen to identify ATP13A2 interacting partners, as a first step toward elucidating its function. Utilizing a split-ubiquitin membrane yeast two-hybrid system that was developed to identify interacting partners of full-length integral membrane proteins, we identified 43 novel interactors that primarily implicate ATP13A2 in cellular processes such as endoplasmic reticulum (ER) translocation, ER-to-Golgi trafficking and vesicular transport and fusion. We showed that a subset of these interactors modified α-syn aggregation and α-syn-mediated degeneration of dopaminergic neurons in Caenorhabditis elegans, further suggesting that ATP13A2 and α-syn are functionally linked in neurodegeneration. These results implicate ATP13A2 in vesicular trafficking and provide a platform for further studies of ATP13A2 in neurodegeneration.

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Year:  2012        PMID: 22645275      PMCID: PMC3412378          DOI: 10.1093/hmg/dds206

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  53 in total

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Authors:  M Ashburner; C A Ball; J A Blake; D Botstein; H Butler; J M Cherry; A P Davis; K Dolinski; S S Dwight; J T Eppig; M A Harris; D P Hill; L Issel-Tarver; A Kasarskis; S Lewis; J C Matese; J E Richardson; M Ringwald; G M Rubin; G Sherlock
Journal:  Nat Genet       Date:  2000-05       Impact factor: 38.330

Review 2.  Alpha-synuclein and neurodegenerative diseases.

Authors:  M Goedert
Journal:  Nat Rev Neurosci       Date:  2001-07       Impact factor: 34.870

3.  The deacetylase HDAC6 regulates aggresome formation and cell viability in response to misfolded protein stress.

Authors:  Yoshiharu Kawaguchi; Jeffrey J Kovacs; Adam McLaurin; Jeffery M Vance; Akihiro Ito; Tso Pang Yao
Journal:  Cell       Date:  2003-12-12       Impact factor: 41.582

Review 4.  What is the role of SNARE proteins in membrane fusion?

Authors:  Joseph G Duman; John G Forte
Journal:  Am J Physiol Cell Physiol       Date:  2003-08       Impact factor: 4.249

Review 5.  Biology, structure and mechanism of P-type ATPases.

Authors:  Werner Kühlbrandt
Journal:  Nat Rev Mol Cell Biol       Date:  2004-04       Impact factor: 94.444

6.  A novel Golgi membrane protein is part of a GTPase-binding protein complex involved in vesicle targeting.

Authors:  H Matern; X Yang; E Andrulis; R Sternglanz; H H Trepte; D Gallwitz
Journal:  EMBO J       Date:  2000-09-01       Impact factor: 11.598

7.  Genome-wide RNAi screening in Caenorhabditis elegans.

Authors:  Ravi S Kamath; Julie Ahringer
Journal:  Methods       Date:  2003-08       Impact factor: 3.608

8.  The Yip1p.Yif1p complex is required for the fusion competence of endoplasmic reticulum-derived vesicles.

Authors:  Jemima Barrowman; Wei Wang; Yueyi Zhang; Susan Ferro-Novick
Journal:  J Biol Chem       Date:  2003-03-25       Impact factor: 5.157

9.  Fusion pore dynamics are regulated by synaptotagmin*t-SNARE interactions.

Authors:  Jihong Bai; Chih-Tien Wang; David A Richards; Meyer B Jackson; Edwin R Chapman
Journal:  Neuron       Date:  2004-03-25       Impact factor: 17.173

10.  NAViGaTOR: Network Analysis, Visualization and Graphing Toronto.

Authors:  Kevin R Brown; David Otasek; Muhammad Ali; Michael J McGuffin; Wing Xie; Baiju Devani; Ian Lawson van Toch; Igor Jurisica
Journal:  Bioinformatics       Date:  2009-10-16       Impact factor: 6.937

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  31 in total

1.  ATP13A2/PARK9 regulates secretion of exosomes and α-synuclein.

Authors:  Taiji Tsunemi; Kana Hamada; Dimitri Krainc
Journal:  J Neurosci       Date:  2014-11-12       Impact factor: 6.167

2.  Exacerbation of sensorimotor dysfunction in mice deficient in Atp13a2 and overexpressing human wildtype alpha-synuclein.

Authors:  Emily R Dirr; Osunde R Ekhator; Rachel Blackwood; John G Holden; Eliezer Masliah; Patrick J Schultheis; Sheila M Fleming
Journal:  Behav Brain Res       Date:  2018-02-03       Impact factor: 3.332

3.  A Global Analysis of the Receptor Tyrosine Kinase-Protein Phosphatase Interactome.

Authors:  Zhong Yao; Katelyn Darowski; Nicole St-Denis; Victoria Wong; Fabian Offensperger; Annabel Villedieu; Shahreen Amin; Ramy Malty; Hiroyuki Aoki; Hongbo Guo; Yang Xu; Caterina Iorio; Max Kotlyar; Andrew Emili; Igor Jurisica; Benjamin G Neel; Mohan Babu; Anne-Claude Gingras; Igor Stagljar
Journal:  Mol Cell       Date:  2017-01-05       Impact factor: 17.970

4.  Ca2+ induces spontaneous dephosphorylation of a novel P5A-type ATPase.

Authors:  Danny Mollerup Sørensen; Annette B Møller; Mia K Jakobsen; Michael K Jensen; Peter Vangheluwe; Morten J Buch-Pedersen; Michael G Palmgren
Journal:  J Biol Chem       Date:  2012-06-22       Impact factor: 5.157

5.  Unlocking ATP13A2/PARK9 activity.

Authors:  Shaun Martin; Tine Holemans; Peter Vangheluwe
Journal:  Cell Cycle       Date:  2015       Impact factor: 4.534

Review 6.  Disturbance of endoplasmic reticulum proteostasis in neurodegenerative diseases.

Authors:  Claudio Hetz; Bertrand Mollereau
Journal:  Nat Rev Neurosci       Date:  2014-03-12       Impact factor: 34.870

7.  A lipid switch unlocks Parkinson's disease-associated ATP13A2.

Authors:  Tine Holemans; Danny Mollerup Sørensen; Sarah van Veen; Shaun Martin; Diane Hermans; Gerdi Christine Kemmer; Chris Van den Haute; Veerle Baekelandt; Thomas Günther Pomorski; Patrizia Agostinis; Frank Wuytack; Michael Palmgren; Jan Eggermont; Peter Vangheluwe
Journal:  Proc Natl Acad Sci U S A       Date:  2015-07-01       Impact factor: 11.205

Review 8.  Lysosomal impairment in Parkinson's disease.

Authors:  Benjamin Dehay; Marta Martinez-Vicente; Guy A Caldwell; Kim A Caldwell; Zhenyue Yue; Mark R Cookson; Christine Klein; Miquel Vila; Erwan Bezard
Journal:  Mov Disord       Date:  2013-04-11       Impact factor: 10.338

Review 9.  Defective autophagy in Parkinson's disease: lessons from genetics.

Authors:  H Zhang; C Duan; H Yang
Journal:  Mol Neurobiol       Date:  2014-07-04       Impact factor: 5.590

Review 10.  Excess iron harms the brain: the syndromes of neurodegeneration with brain iron accumulation (NBIA).

Authors:  Susanne A Schneider; Kailash P Bhatia
Journal:  J Neural Transm (Vienna)       Date:  2012-12-02       Impact factor: 3.575

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