Literature DB >> 29390050

A homozygous ATAD1 mutation impairs postsynaptic AMPA receptor trafficking and causes a lethal encephalopathy.

Juliette Piard1,2, George K Essien Umanah3,4, Frederike L Harms5, Leire Abalde-Atristain3,6, Daniel Amram7, Melissa Chang3,4, Rong Chen3,4, Malik Alawi8,9, Vincenzo Salpietro10, Mark I Rees11, Seo-Kyung Chung11, Henry Houlden10, Alain Verloes12, Ted M Dawson3,4,6,13,14, Valina L Dawson3,4,6,13,15, Lionel Van Maldergem1,2,16, Kerstin Kutsche5.   

Abstract

Members of the AAA+ superfamily of ATPases are involved in the unfolding of proteins and disassembly of protein complexes and aggregates. ATAD1 encoding the ATPase family, AAA+ domain containing 1-protein Thorase plays an important role in the function and integrity of mitochondria and peroxisomes. Postsynaptically, Thorase controls the internalization of excitatory, glutamatergic AMPA receptors by disassembling complexes between the AMPA receptor-binding protein, GRIP1, and the AMPA receptor subunit GluA2. Using whole-exome sequencing, we identified a homozygous frameshift mutation in the last exon of ATAD1 [c.1070_1071delAT; p.(His357Argfs*15)] in three siblings who presented with a severe, lethal encephalopathy associated with stiffness and arthrogryposis. Biochemical and cellular analyses show that the C-terminal end of Thorase mutant gained a novel function that strongly impacts its oligomeric state, reduces stability or expression of a set of Golgi, peroxisomal and mitochondrial proteins and affects disassembly of GluA2 and Thorase oligomer complexes. Atad1-/- neurons expressing Thorase mutantHis357Argfs*15 display reduced amount of GluA2 at the cell surface suggesting that the Thorase mutant may inhibit the recycling back and/or reinsertion of AMPA receptors to the plasma membrane. Taken together, our molecular and functional analyses identify an activating ATAD1 mutation as a new cause of severe encephalopathy and congenital stiffness.

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Year:  2018        PMID: 29390050      PMCID: PMC5837721          DOI: 10.1093/brain/awx377

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  22 in total

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Review 2.  AAA+ proteins: have engine, will work.

Authors:  Phyllis I Hanson; Sidney W Whiteheart
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  18 in total

1.  Mitochondrial AAA-ATPase Msp1 detects mislocalized tail-anchored proteins through a dual-recognition mechanism.

Authors:  Lanlan Li; Jing Zheng; Xi Wu; Hui Jiang
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2.  Reply: ATAD1 encephalopathy and stiff baby syndrome: a recognizable clinical presentation.

Authors:  Juliette Piard; George K Essien Umanah; Frederike L Harms; Leire Abalde-Atristain; Daniel Amram; Melissa Chang; Rong Chen; Malik Alawi; Vincenzo Salpietro; Mark I Rees; Seo-Kyung Chung; Henry Houlden; Alain Verloes; Ted M Dawson; Valina L Dawson; Lionel Van Maldergem; Kerstin Kutsche
Journal:  Brain       Date:  2018-06-01       Impact factor: 13.501

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Review 7.  Recent Findings on AMPA Receptor Recycling.

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Journal:  Front Cell Neurosci       Date:  2018-09-03       Impact factor: 5.505

8.  An IQSEC2 Mutation Associated With Intellectual Disability and Autism Results in Decreased Surface AMPA Receptors.

Authors:  Eli J Rogers; Reem Jada; Kinneret Schragenheim-Rozales; Megha Sah; Marisol Cortes; Matthew Florence; Nina S Levy; Rachel Moss; Randall S Walikonis; Raz Palty; Reut Shalgi; Daniela Lichtman; Alexandra Kavushansky; Nashaat Z Gerges; Itamar Kahn; George K E Umanah; Andrew P Levy
Journal:  Front Mol Neurosci       Date:  2019-02-20       Impact factor: 5.639

9.  Msp1 cooperates with the proteasome for extraction of arrested mitochondrial import intermediates.

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Journal:  Mol Biol Cell       Date:  2020-02-12       Impact factor: 4.138

10.  The biochemical basis of mitochondrial dysfunction in Zellweger Spectrum Disorder.

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Journal:  EMBO Rep       Date:  2021-08-05       Impact factor: 9.071

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