Literature DB >> 27861786

Infantile spasms and encephalopathy without preceding neonatal seizures caused by KCNQ2 R198Q, a gain-of-function variant.

John J Millichap1, Francesco Miceli2, Michela De Maria3, Cynthia Keator4, Nishtha Joshi5, Baouyen Tran5, Maria Virginia Soldovieri3, Paolo Ambrosino3, Vandana Shashi6, Mohamad A Mikati6, Edward C Cooper5, Maurizio Taglialatela2,3.   

Abstract

Variants in KCNQ2 encoding for Kv 7.2 neuronal K+ channel subunits lead to a spectrum of neonatal-onset epilepsies, ranging from self-limiting forms to severe epileptic encephalopathy. Most KCNQ2 pathogenic variants cause loss-of-function, whereas few increase channel activity (gain-of-function). We herein provide evidence for a new phenotypic and functional profile in KCNQ2-related epilepsy: infantile spasms without prior neonatal seizures associated with a gain-of-function gene variant. With use of an international registry, we identified four unrelated patients with the same de novo heterozygous KCNQ2 c.593G>A, p.Arg198Gln (R198Q) variant. All were born at term and discharged home without seizures or concern of encephalopathy, but developed infantile spasms with hypsarrhythmia (or modified hypsarrhythmia) between the ages of 4 and 6 months. At last follow-up (ages 3-11 years), all patients were seizure-free and had severe developmental delay. In vitro experiments showed that Kv7.2 R198Q subunits shifted current activation gating to hyperpolarized potentials, indicative of gain-of-function; in neurons, Kv 7.2 and Kv 7.2 R198Q subunits similarly populated the axon initial segment, suggesting that gating changes rather than altered subcellular distribution contribute to disease molecular pathogenesis. We conclude that KCNQ2 R198Q is a model for a new subclass of KCNQ2 variants causing infantile spasms and encephalopathy, without preceding neonatal seizures. A PowerPoint slide summarizing this article is available for download in the Supporting Information section here. Wiley Periodicals, Inc.
© 2016 International League Against Epilepsy.

Entities:  

Keywords:  Epileptic encephalopathy; Gene variants; Genotype-phenotype; KCNQ2; Potassium channels; axon initial segment; retigabine

Mesh:

Substances:

Year:  2016        PMID: 27861786      PMCID: PMC5219941          DOI: 10.1111/epi.13601

Source DB:  PubMed          Journal:  Epilepsia        ISSN: 0013-9580            Impact factor:   5.864


  18 in total

1.  Mechanism of voltage gating in potassium channels.

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2.  KCNQ2 encephalopathy: emerging phenotype of a neonatal epileptic encephalopathy.

Authors:  Sarah Weckhuysen; Simone Mandelstam; Arvid Suls; Dominique Audenaert; Tine Deconinck; Lieve R F Claes; Liesbet Deprez; Katrien Smets; Dimitrina Hristova; Iglika Yordanova; Albena Jordanova; Berten Ceulemans; An Jansen; Danièle Hasaerts; Filip Roelens; Lieven Lagae; Simone Yendle; Thorsten Stanley; Sarah E Heron; John C Mulley; Samuel F Berkovic; Ingrid E Scheffer; Peter de Jonghe
Journal:  Ann Neurol       Date:  2012-01       Impact factor: 10.422

3.  Range of genetic mutations associated with severe non-syndromic sporadic intellectual disability: an exome sequencing study.

Authors:  Anita Rauch; Dagmar Wieczorek; Elisabeth Graf; Thomas Wieland; Sabine Endele; Thomas Schwarzmayr; Beate Albrecht; Deborah Bartholdi; Jasmin Beygo; Nataliya Di Donato; Andreas Dufke; Kirsten Cremer; Maja Hempel; Denise Horn; Juliane Hoyer; Pascal Joset; Albrecht Röpke; Ute Moog; Angelika Riess; Christian T Thiel; Andreas Tzschach; Antje Wiesener; Eva Wohlleber; Christiane Zweier; Arif B Ekici; Alexander M Zink; Andreas Rump; Christa Meisinger; Harald Grallert; Heinrich Sticht; Annette Schenck; Hartmut Engels; Gudrun Rappold; Evelin Schröck; Peter Wieacker; Olaf Riess; Thomas Meitinger; André Reis; Tim M Strom
Journal:  Lancet       Date:  2012-09-27       Impact factor: 79.321

4.  Whole-exome sequencing improves the diagnosis yield in sporadic infantile spasm syndrome.

Authors:  S Dimassi; A Labalme; D Ville; A Calender; C Mignot; N Boutry-Kryza; J de Bellescize; C Rivier-Ringenbach; E Bourel-Ponchel; D Cheillan; T Simonet; K Maincent; M Rossi; M Till; S Mougou-Zerelli; P Edery; A Saad; D Heron; V des Portes; D Sanlaville; G Lesca
Journal:  Clin Genet       Date:  2015-07-30       Impact factor: 4.438

5.  Gating consequences of charge neutralization of arginine residues in the S4 segment of K(v)7.2, an epilepsy-linked K+ channel subunit.

Authors:  Francesco Miceli; Maria Virginia Soldovieri; Ciria C Hernandez; Mark S Shapiro; Lucio Annunziato; Maurizio Taglialatela
Journal:  Biophys J       Date:  2008-05-30       Impact factor: 4.033

6.  Early-onset epileptic encephalopathy caused by gain-of-function mutations in the voltage sensor of Kv7.2 and Kv7.3 potassium channel subunits.

Authors:  Francesco Miceli; Maria Virginia Soldovieri; Paolo Ambrosino; Michela De Maria; Michele Migliore; Rosanna Migliore; Maurizio Taglialatela
Journal:  J Neurosci       Date:  2015-03-04       Impact factor: 6.167

Review 7.  Driving with no brakes: molecular pathophysiology of Kv7 potassium channels.

Authors:  Maria Virginia Soldovieri; Francesco Miceli; Maurizio Taglialatela
Journal:  Physiology (Bethesda)       Date:  2011-10

8.  Genotype-phenotype correlations in neonatal epilepsies caused by mutations in the voltage sensor of K(v)7.2 potassium channel subunits.

Authors:  Francesco Miceli; Maria Virginia Soldovieri; Paolo Ambrosino; Vincenzo Barrese; Michele Migliore; Maria Roberta Cilio; Maurizio Taglialatela
Journal:  Proc Natl Acad Sci U S A       Date:  2013-02-25       Impact factor: 11.205

9.  De novo mutations in epileptic encephalopathies.

Authors:  Andrew S Allen; Samuel F Berkovic; Patrick Cossette; Norman Delanty; Dennis Dlugos; Evan E Eichler; Michael P Epstein; Tracy Glauser; David B Goldstein; Yujun Han; Erin L Heinzen; Yuki Hitomi; Katherine B Howell; Michael R Johnson; Ruben Kuzniecky; Daniel H Lowenstein; Yi-Fan Lu; Maura R Z Madou; Anthony G Marson; Heather C Mefford; Sahar Esmaeeli Nieh; Terence J O'Brien; Ruth Ottman; Slavé Petrovski; Annapurna Poduri; Elizabeth K Ruzzo; Ingrid E Scheffer; Elliott H Sherr; Christopher J Yuskaitis; Bassel Abou-Khalil; Brian K Alldredge; Jocelyn F Bautista; Samuel F Berkovic; Alex Boro; Gregory D Cascino; Damian Consalvo; Patricia Crumrine; Orrin Devinsky; Dennis Dlugos; Michael P Epstein; Miguel Fiol; Nathan B Fountain; Jacqueline French; Daniel Friedman; Eric B Geller; Tracy Glauser; Simon Glynn; Sheryl R Haut; Jean Hayward; Sandra L Helmers; Sucheta Joshi; Andres Kanner; Heidi E Kirsch; Robert C Knowlton; Eric H Kossoff; Rachel Kuperman; Ruben Kuzniecky; Daniel H Lowenstein; Shannon M McGuire; Paul V Motika; Edward J Novotny; Ruth Ottman; Juliann M Paolicchi; Jack M Parent; Kristen Park; Annapurna Poduri; Ingrid E Scheffer; Renée A Shellhaas; Elliott H Sherr; Jerry J Shih; Rani Singh; Joseph Sirven; Michael C Smith; Joseph Sullivan; Liu Lin Thio; Anu Venkat; Eileen P G Vining; Gretchen K Von Allmen; Judith L Weisenberg; Peter Widdess-Walsh; Melodie R Winawer
Journal:  Nature       Date:  2013-08-11       Impact factor: 49.962

10.  The kick-in system: a novel rapid knock-in strategy.

Authors:  Yuko Tomonoh; Masanobu Deshimaru; Kimi Araki; Yasuhiro Miyazaki; Tomoko Arasaki; Yasuyoshi Tanaka; Haruna Kitamura; Fumiaki Mori; Koichi Wakabayashi; Sayaka Yamashita; Ryo Saito; Masayuki Itoh; Taku Uchida; Junko Yamada; Keisuke Migita; Shinya Ueno; Hiroki Kitaura; Akiyoshi Kakita; Christoph Lossin; Yukio Takano; Shinichi Hirose
Journal:  PLoS One       Date:  2014-02-19       Impact factor: 3.240

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  25 in total

1.  Neonatal nonepileptic myoclonus is a prominent clinical feature of KCNQ2 gain-of-function variants R201C and R201H.

Authors:  Sarah B Mulkey; Bruria Ben-Zeev; Joost Nicolai; John L Carroll; Sabine Grønborg; Yong-Hui Jiang; Nishtha Joshi; Megan Kelly; David A Koolen; Mohamad A Mikati; Kristen Park; Phillip L Pearl; Ingrid E Scheffer; Rebecca C Spillmann; Maurizio Taglialatela; Silvia Vieker; Sarah Weckhuysen; Edward C Cooper; Maria Roberta Cilio
Journal:  Epilepsia       Date:  2017-01-31       Impact factor: 5.864

2.  Proactive functional classification of all possible missense single-nucleotide variants in KCNQ4.

Authors:  Honglan Zheng; Xinhao Yan; Guanluan Li; Hengwei Lin; Siqi Deng; Wenhui Zhuang; Fuqiang Yao; Yu Lu; Xin Xia; Huijun Yuan; Li Jin; Zhiqiang Yan
Journal:  Genome Res       Date:  2022-06-27       Impact factor: 9.438

3.  Distinctive mechanisms of epilepsy-causing mutants discovered by measuring S4 movement in KCNQ2 channels.

Authors:  Michaela A Edmond; Andy Hinojo-Perez; Xiaoan Wu; Marta E Perez Rodriguez; Rene Barro-Soria
Journal:  Elife       Date:  2022-06-01       Impact factor: 8.713

4.  Human KCNQ5 de novo mutations underlie epilepsy and intellectual disability.

Authors:  Aguan D Wei; Paul Wakenight; Theresa A Zwingman; Angela M Bard; Nikhil Sahai; Marjolein H Willemsen; Helenius J Schelhaas; Alexander P A Stegmann; Judith S Verhoeven; Stella A de Man; Marja W Wessels; Tjitske Kleefstra; Deepali N Shinde; Katherine L Helbig; Alice Basinger; Victoria F Wagner; David Rodriguez-Buritica; Emily Bryant; John J Millichap; Kathleen J Millen; William B Dobyns; Jan-Marino Ramirez; Franck K Kalume
Journal:  J Neurophysiol       Date:  2022-05-18       Impact factor: 2.974

5.  Potassium Channel Gain of Function in Epilepsy: An Unresolved Paradox.

Authors:  Zachary Niday; Anastasios V Tzingounis
Journal:  Neuroscientist       Date:  2018-03-15       Impact factor: 7.519

6.  Kv7.3 Compound Heterozygous Variants in Early Onset Encephalopathy Reveal Additive Contribution of C-Terminal Residues to PIP2-Dependent K+ Channel Gating.

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Journal:  Mol Neurobiol       Date:  2018-01-30       Impact factor: 5.590

Review 7.  Modeling epileptic spasms during infancy: Are we heading for the treatment yet?

Authors:  Libor Velíšek; Jana Velíšková
Journal:  Pharmacol Ther       Date:  2020-05-15       Impact factor: 12.310

8.  In Silico Predictions of KCNQ Variant Pathogenicity in Epilepsy.

Authors:  David M Ritter; Paul S Horn; Katherine D Holland
Journal:  Pediatr Neurol       Date:  2021-01-27       Impact factor: 3.372

9.  Dyshomeostatic modulation of Ca2+-activated K+ channels in a human neuronal model of KCNQ2 encephalopathy.

Authors:  Dina Simkin; Kelly A Marshall; Carlos G Vanoye; Reshma R Desai; Bernabe I Bustos; Brandon N Piyevsky; Juan A Ortega; Marc Forrest; Gabriella L Robertson; Peter Penzes; Linda C Laux; Steven J Lubbe; John J Millichap; Alfred L George; Evangelos Kiskinis
Journal:  Elife       Date:  2021-02-05       Impact factor: 8.713

10.  Distinct epilepsy phenotypes and response to drugs in KCNA1 gain- and loss-of function variants.

Authors:  Francesco Miceli; Renzo Guerrini; Mario Nappi; Maria Virginia Soldovieri; Elena Cellini; Christina A Gurnett; Lucio Parmeggiani; Davide Mei; Maurizio Taglialatela
Journal:  Epilepsia       Date:  2021-11-14       Impact factor: 6.740

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