Literature DB >> 30215512

MIEF1 Microprotein Regulates Mitochondrial Translation.

Annie Rathore1,2, Qian Chu1, Dan Tan1, Thomas F Martinez1, Cynthia J Donaldson1, Jolene K Diedrich3,4, John R Yates4, Alan Saghatelian1.   

Abstract

Recent technological advances led to the discovery of hundreds to thousands of peptides and small proteins (microproteins) encoded by small open reading frames (smORFs). Characterization of new microproteins demonstrates their role in fundamental biological processes and highlights the value in discovering and characterizing more microproteins. The elucidation of microprotein-protein interactions (MPIs) is useful for determining the biochemical and cellular roles of microproteins. In this study, we characterize the protein interaction partners of mitochondrial elongation factor 1 microprotein (MIEF1-MP) using a proximity labeling strategy that relies on APEX2. MIEF1-MP localizes to the mitochondrial matrix where it interacts with the mitochondrial ribosome (mitoribosome). Functional studies demonstrate that MIEF1-MP regulates mitochondrial translation via its binding to the mitoribosome. Loss of MIEF1-MP decreases the mitochondrial translation rate, while an elevated level of MIEF1-MP increases the translation rate. The identification of MIEF1-MP reveals a new gene involved in this process.

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Year:  2018        PMID: 30215512      PMCID: PMC6443411          DOI: 10.1021/acs.biochem.8b00726

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  67 in total

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Journal:  Science       Date:  2015-09-18       Impact factor: 47.728

2.  Isolation of mitochondria-associated membranes and mitochondria from animal tissues and cells.

Authors:  Mariusz R Wieckowski; Carlotta Giorgi; Magdalena Lebiedzinska; Jerzy Duszynski; Paolo Pinton
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3.  Structural biology. Mechanistic insight from the crystal structure of mitochondrial complex I.

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4.  The LYR protein subunit NB4M/NDUFA6 of mitochondrial complex I anchors an acyl carrier protein and is essential for catalytic activity.

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Journal:  Proc Natl Acad Sci U S A       Date:  2014-03-24       Impact factor: 11.205

5.  Acn9 is a novel protein of gluconeogenesis that is located in the mitochondrial intermembrane space.

Authors:  R A Dennis; M T McCammon
Journal:  Eur J Biochem       Date:  1999-04

Review 6.  Discovery and characterization of smORF-encoded bioactive polypeptides.

Authors:  Alan Saghatelian; Juan Pablo Couso
Journal:  Nat Chem Biol       Date:  2015-12       Impact factor: 15.040

7.  Upstream open reading frames cause widespread reduction of protein expression and are polymorphic among humans.

Authors:  Sarah E Calvo; David J Pagliarini; Vamsi K Mootha
Journal:  Proc Natl Acad Sci U S A       Date:  2009-04-16       Impact factor: 11.205

8.  A mitochondrial protein compendium elucidates complex I disease biology.

Authors:  David J Pagliarini; Sarah E Calvo; Betty Chang; Sunil A Sheth; Scott B Vafai; Shao-En Ong; Geoffrey A Walford; Canny Sugiana; Avihu Boneh; William K Chen; David E Hill; Marc Vidal; James G Evans; David R Thorburn; Steven A Carr; Vamsi K Mootha
Journal:  Cell       Date:  2008-07-11       Impact factor: 41.582

Review 9.  Eukaryotic LYR Proteins Interact with Mitochondrial Protein Complexes.

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Journal:  Biology (Basel)       Date:  2015-02-12

10.  MIEF1/2 function as adaptors to recruit Drp1 to mitochondria and regulate the association of Drp1 with Mff.

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Journal:  Sci Rep       Date:  2017-04-13       Impact factor: 4.379

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  22 in total

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Authors:  Alexandra Khitun; Travis J Ness; Sarah A Slavoff
Journal:  Mol Omics       Date:  2019-02-27

2.  Pervasive functional translation of noncanonical human open reading frames.

Authors:  Jin Chen; Andreas-David Brunner; J Zachery Cogan; James K Nuñez; Alexander P Fields; Britt Adamson; Daniel N Itzhak; Jason Y Li; Matthias Mann; Manuel D Leonetti; Jonathan S Weissman
Journal:  Science       Date:  2020-03-06       Impact factor: 47.728

Review 3.  Peptides derived from small mitochondrial open reading frames: Genomic, biological, and therapeutic implications.

Authors:  Brendan Miller; Su-Jeong Kim; Hiroshi Kumagai; Hemal H Mehta; Wang Xiang; Jiali Liu; Kelvin Yen; Pinchas Cohen
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4.  An Integrated Approach for Microprotein Identification and Sequence Analysis.

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Review 5.  The dark proteome: translation from noncanonical open reading frames.

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Journal:  Trends Cell Biol       Date:  2021-11-26       Impact factor: 21.167

6.  The Mitochondrial Acyl-carrier Protein Interaction Network Highlights Important Roles for LYRM Family Members in Complex I and Mitoribosome Assembly.

Authors:  Marris G Dibley; Luke E Formosa; Baobei Lyu; Boris Reljic; Dylan McGann; Linden Muellner-Wong; Felix Kraus; Alice J Sharpe; David A Stroud; Michael T Ryan
Journal:  Mol Cell Proteomics       Date:  2019-10-30       Impact factor: 5.911

Review 7.  Proximity-dependent labeling methods for proteomic profiling in living cells: An update.

Authors:  Justin A Bosch; Chiao-Lin Chen; Norbert Perrimon
Journal:  Wiley Interdiscip Rev Dev Biol       Date:  2020-09-10       Impact factor: 5.814

Review 8.  The Mysterious Multitude: Structural Perspective on the Accessory Subunits of Respiratory Complex I.

Authors:  Abhilash Padavannil; Maria G Ayala-Hernandez; Eimy A Castellanos-Silva; James A Letts
Journal:  Front Mol Biosci       Date:  2022-01-03

9.  Trips-Viz: an environment for the analysis of public and user-generated ribosome profiling data.

Authors:  Stephen J Kiniry; Ciara E Judge; Audrey M Michel; Pavel V Baranov
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Review 10.  Non-AUG translation initiation in mammals.

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Journal:  Genome Biol       Date:  2022-05-09       Impact factor: 17.906

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