Literature DB >> 21317923

Molecular basis of a novel oncogenic mutation in GNAO1.

M Garcia-Marcos1, P Ghosh, M G Farquhar.   

Abstract

Heterotrimeric G proteins are molecular switches that control signal transduction, and their dysregulation can promote oncogenesis. Somatic mutations in GNAS, GNAI2 and GNAQ genes induce oncogenesis by rendering Gα subunits constitutively activated. Recently the first somatic mutation, arginine(243) → histidine (R243H) in the GNAO1 (Gαo) gene was identified in breast carcinomas and shown to promote oncogenic transformation when introduced into cells. Here, we provide the molecular basis for the oncogenic properties of the Gαo R243H mutant. Using limited proteolysis assays, nucleotide-binding assays, and single-turnover and steady-state GTPase assays, we demonstrate that the oncogenic R234H mutation renders Gαo constitutively active by accelerating the rate of nucleotide exchange; however, this mutation does not affect Gαo's ability to become deactivated by GTPase-activating proteins (GAPs) or by its intrinsic GTPase activity. This mechanism differs from that of previously reported oncogenic mutations that impair GTPase activity and GAP sensitivity without affecting nucleotide exchange. The constitutively active Gαo R243H mutant also enhances Src-STAT3 signaling in NIH-3T3 cells, a pathway previously shown to be directly triggered by active Gαo proteins to promote cellular transformation. Based on structural analyses, we propose that the enhanced rate of nucleotide exchange in Gαo R243H results from loss of the highly conserved electrostatic interaction of R243 with E43, located in the in the P-loop that represents the binding site for the α- and β-phosphates of the nucleotide. We conclude that the novel R234H mutation imparts oncogenic properties to Gαo by accelerating nucleotide exchange and rendering it constitutively active, thereby enhancing signaling pathways, for example, src-STAT3, responsible for neoplastic transformation.

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Year:  2011        PMID: 21317923      PMCID: PMC3349449          DOI: 10.1038/onc.2010.645

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  41 in total

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Authors:  V Radhika; N Dhanasekaran
Journal:  Oncogene       Date:  2001-03-26       Impact factor: 9.867

2.  GIV is a nonreceptor GEF for G alpha i with a unique motif that regulates Akt signaling.

Authors:  Mikel Garcia-Marcos; Pradipta Ghosh; Marilyn G Farquhar
Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-11       Impact factor: 11.205

3.  The Catalogue of Somatic Mutations in Cancer (COSMIC).

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Journal:  Curr Protoc Hum Genet       Date:  2008-04

4.  Stat3-mediated transformation of NIH-3T3 cells by the constitutively active Q205L Galphao protein.

Authors:  P T Ram; C M Horvath; R Iyengar
Journal:  Science       Date:  2000-01-07       Impact factor: 47.728

5.  A structural determinant that renders G alpha(i) sensitive to activation by GIV/girdin is required to promote cell migration.

Authors:  Mikel Garcia-Marcos; Pradipta Ghosh; Jason Ear; Marilyn G Farquhar
Journal:  J Biol Chem       Date:  2010-02-15       Impact factor: 5.157

6.  Diverse somatic mutation patterns and pathway alterations in human cancers.

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Journal:  Nature       Date:  2010-07-28       Impact factor: 49.962

7.  A G{alpha}i-GIV molecular complex binds epidermal growth factor receptor and determines whether cells migrate or proliferate.

Authors:  Pradipta Ghosh; Anthony O Beas; Scott J Bornheimer; Mikel Garcia-Marcos; Erin P Forry; Carola Johannson; Jason Ear; Barbara H Jung; Betty Cabrera; John M Carethers; Marilyn G Farquhar
Journal:  Mol Biol Cell       Date:  2010-05-12       Impact factor: 4.138

8.  The same mutation in Gsalpha and transducin alpha reveals behavioral differences between these highly homologous G protein alpha-subunits.

Authors:  Adolfo R Zurita; Lutz Birnbaumer
Journal:  Proc Natl Acad Sci U S A       Date:  2008-02-07       Impact factor: 11.205

9.  Frequent somatic mutations of GNAQ in uveal melanoma and blue naevi.

Authors:  Catherine D Van Raamsdonk; Vladimir Bezrookove; Gary Green; Jürgen Bauer; Lona Gaugler; Joan M O'Brien; Elizabeth M Simpson; Gregory S Barsh; Boris C Bastian
Journal:  Nature       Date:  2008-12-10       Impact factor: 49.962

10.  Mutational profile of GNAQQ209 in human tumors.

Authors:  Simona Lamba; Lara Felicioni; Fiamma Buttitta; Fonnet E Bleeker; Sara Malatesta; Vincenzo Corbo; Aldo Scarpa; Monica Rodolfo; Margaret Knowles; Milo Frattini; Antonio Marchetti; Alberto Bardelli
Journal:  PLoS One       Date:  2009-08-31       Impact factor: 3.240

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  29 in total

Review 1.  Regulators of G-protein signaling and their Gα substrates: promises and challenges in their use as drug discovery targets.

Authors:  Adam J Kimple; Dustin E Bosch; Patrick M Giguère; David P Siderovski
Journal:  Pharmacol Rev       Date:  2011-07-07       Impact factor: 25.468

2.  Revealing the Activity of Trimeric G-proteins in Live Cells with a Versatile Biosensor Design.

Authors:  Marcin Maziarz; Jong-Chan Park; Anthony Leyme; Arthur Marivin; Alberto Garcia-Lopez; Prachi P Patel; Mikel Garcia-Marcos
Journal:  Cell       Date:  2020-07-06       Impact factor: 41.582

3.  Different biochemical properties explain why two equivalent Gα subunit mutants cause unrelated diseases.

Authors:  Anthony Leyme; Arthur Marivin; Jason Casler; Lien T Nguyen; Mikel Garcia-Marcos
Journal:  J Biol Chem       Date:  2014-06-30       Impact factor: 5.157

4.  The oncogenic polycomb histone methyltransferase EZH2 methylates lysine 120 on histone H2B and competes ubiquitination.

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Journal:  Neoplasia       Date:  2013-11       Impact factor: 5.715

5.  Comprehensive transcriptome analysis of cerebral cavernous malformation across multiple species and genotypes.

Authors:  Janne Koskimäki; Romuald Girard; Yan Li; Laleh Saadat; Hussein A Zeineddine; Rhonda Lightle; Thomas Moore; Seán Lyne; Kenneth Avner; Robert Shenkar; Ying Cao; Changbin Shi; Sean P Polster; Dongdong Zhang; Julián Carrión-Penagos; Sharbel Romanos; Gregory Fonseca; Miguel A Lopez-Ramirez; Eric M Chapman; Evelyn Popiel; Alan T Tang; Amy Akers; Pieter Faber; Jorge Andrade; Mark Ginsberg; W Brent Derry; Mark L Kahn; Douglas A Marchuk; Issam A Awad
Journal:  JCI Insight       Date:  2019-02-07

6.  Probing the mutational landscape of regulators of G protein signaling proteins in cancer.

Authors:  Vincent DiGiacomo; Marcin Maziarz; Alex Luebbers; Jillian M Norris; Pandu Laksono; Mikel Garcia-Marcos
Journal:  Sci Signal       Date:  2020-02-04       Impact factor: 8.192

Review 7.  Molecular targeting of Gα and Gβγ subunits: a potential approach for cancer therapeutics.

Authors:  Alan V Smrcka
Journal:  Trends Pharmacol Sci       Date:  2013-04-01       Impact factor: 14.819

8.  Gαo potentiates estrogen receptor α activity via the ERK signaling pathway.

Authors:  Melyssa R Bratton; James W Antoon; Bich N Duong; Daniel E Frigo; Syreeta Tilghman; Bridgette M Collins-Burow; Steven Elliott; Yan Tang; Lilia I Melnik; Ling Lai; Jawed Alam; Barbara S Beckman; Steven M Hill; Brian G Rowan; John A McLachlan; Matthew E Burow
Journal:  J Endocrinol       Date:  2012-05-04       Impact factor: 4.286

Review 9.  The emerging mutational landscape of G proteins and G-protein-coupled receptors in cancer.

Authors:  Morgan O'Hayre; José Vázquez-Prado; Irina Kufareva; Eric W Stawiski; Tracy M Handel; Somasekar Seshagiri; J Silvio Gutkind
Journal:  Nat Rev Cancer       Date:  2013-05-03       Impact factor: 60.716

Review 10.  G Protein-Coupled receptors and heterotrimeric G proteins as cancer drivers.

Authors:  Nadia Arang; J Silvio Gutkind
Journal:  FEBS Lett       Date:  2020-12       Impact factor: 4.124

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