Literature DB >> 17592134

Zebrafish model for human long QT syndrome.

Rima Arnaout1, Tania Ferrer, Jan Huisken, Kenneth Spitzer, Didier Y R Stainier, Martin Tristani-Firouzi, Neil C Chi.   

Abstract

Long QT syndrome (LQTS) is a disorder of ventricular repolarization that predisposes affected individuals to lethal cardiac arrhythmias. To date, an appropriate animal model of inherited LQTS does not exist. The zebrafish is a powerful vertebrate model used to dissect molecular pathways of cardiovascular development and disease. Because fundamental electrical properties of the zebrafish heart are remarkably similar to those of the human heart, the zebrafish may be an appropriate model for studying human inherited arrhythmias. Here we describe the molecular, cellular, and electrophysiological basis of a zebrafish mutant characterized by ventricular asystole. Genetic mapping and direct sequencing identify the affected gene as kcnh2, which encodes the channel responsible for the rapidly activating delayed rectifier K(+) current (I(Kr)). We show that complete loss of functional I(Kr) in embryonic hearts leads to ventricular cell membrane depolarization, inability to generate action potentials (APs), and disrupted calcium release. A small hyperpolarizing current restores spontaneous APs, implying wild-type function of other ionic currents critical for AP generation. Heterozygous fish manifest overt cellular and electrocardiographic evidence for delayed ventricular repolarization. Our findings provide insight into the pathogenesis of homozygous kcnh2 mutations and expand the use of zebrafish mutants as a model system to study human arrhythmias.

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Year:  2007        PMID: 17592134      PMCID: PMC2040896          DOI: 10.1073/pnas.0702724104

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  25 in total

1.  Optical sectioning deep inside live embryos by selective plane illumination microscopy.

Authors:  Jan Huisken; Jim Swoger; Filippo Del Bene; Joachim Wittbrodt; Ernst H K Stelzer
Journal:  Science       Date:  2004-08-13       Impact factor: 47.728

2.  Human ventricular action potential duration during short and long cycles. Rapid modulation by ischemia.

Authors:  P Taggart; P M Sutton; M R Boyett; M Lab; H Swanton
Journal:  Circulation       Date:  1996-11-15       Impact factor: 29.690

3.  HERG, a primary human ventricular target of the nonsedating antihistamine terfenadine.

Authors:  M Roy; R Dumaine; A M Brown
Journal:  Circulation       Date:  1996-08-15       Impact factor: 29.690

4.  Functional and morphological evidence for a ventricular conduction system in zebrafish and Xenopus hearts.

Authors:  David Sedmera; Maria Reckova; Angela deAlmeida; Martina Sedmerova; Martin Biermann; Jiri Volejnik; Alexandre Sarre; Eric Raddatz; Robert A McCarthy; Robert G Gourdie; Robert P Thompson
Journal:  Am J Physiol Heart Circ Physiol       Date:  2003-04       Impact factor: 4.733

5.  Spectrum of HERG K+-channel dysfunction in an inherited cardiac arrhythmia.

Authors:  M C Sanguinetti; M E Curran; P S Spector; M T Keating
Journal:  Proc Natl Acad Sci U S A       Date:  1996-03-05       Impact factor: 11.205

6.  Cardiomyocytes differentiated in vitro from embryonic stem cells developmentally express cardiac-specific genes and ionic currents.

Authors:  V A Maltsev; A M Wobus; J Rohwedel; M Bader; J Hescheler
Journal:  Circ Res       Date:  1994-08       Impact factor: 17.367

Review 7.  Studying cardiac arrhythmias in the mouse--a reasonable model for probing mechanisms?

Authors:  Jeanne M Nerbonne
Journal:  Trends Cardiovasc Med       Date:  2004-04       Impact factor: 6.677

8.  Germ-line transmission of a myocardium-specific GFP transgene reveals critical regulatory elements in the cardiac myosin light chain 2 promoter of zebrafish.

Authors:  Chiu-Ju Huang; Chi-Tang Tu; Chung-Der Hsiao; Fong-Jou Hsieh; Huai-Jen Tsai
Journal:  Dev Dyn       Date:  2003-09       Impact factor: 3.780

9.  Cardiac electrophysiological actions of the histamine H1-receptor antagonists astemizole and terfenadine compared with chlorpheniramine and pyrilamine.

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Journal:  Circ Res       Date:  1995-01       Impact factor: 17.367

10.  Mutations affecting the formation and function of the cardiovascular system in the zebrafish embryo.

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Journal:  Development       Date:  1996-12       Impact factor: 6.868

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  95 in total

Review 1.  Optical mapping in the developing zebrafish heart.

Authors:  M Khaled Sabeh; Hussein Kekhia; Calum A Macrae
Journal:  Pediatr Cardiol       Date:  2012-03-30       Impact factor: 1.655

2.  Compact plane illumination plugin device to enable light sheet fluorescence imaging of multi-cellular organisms on an inverted wide-field microscope.

Authors:  Zeyi Guan; Juhyun Lee; Hao Jiang; Siyan Dong; Nelson Jen; Tzung Hsiai; Chih-Ming Ho; Peng Fei
Journal:  Biomed Opt Express       Date:  2015-12-21       Impact factor: 3.732

3.  Zebrafish as a model for cardiovascular development and disease.

Authors:  Catherine T Nguyen; Qing Lu; Yibin Wang; Jau-Nian Chen
Journal:  Drug Discov Today Dis Models       Date:  2008

4.  A dual role for ErbB2 signaling in cardiac trabeculation.

Authors:  Jiandong Liu; Michael Bressan; David Hassel; Jan Huisken; David Staudt; Kazu Kikuchi; Kenneth D Poss; Takashi Mikawa; Didier Y R Stainier
Journal:  Development       Date:  2010-11       Impact factor: 6.868

5.  Novel chemical suppressors of long QT syndrome identified by an in vivo functional screen.

Authors:  David S Peal; Robert W Mills; Stacey N Lynch; Janet M Mosley; Evi Lim; Patrick T Ellinor; Craig T January; Randall T Peterson; David J Milan
Journal:  Circulation       Date:  2010-11-15       Impact factor: 29.690

Review 6.  Selective plane illumination microscopy techniques in developmental biology.

Authors:  Jan Huisken; Didier Y R Stainier
Journal:  Development       Date:  2009-06       Impact factor: 6.868

7.  Novel cardiovascular gene functions revealed via systematic phenotype prediction in zebrafish.

Authors:  Gabriel Musso; Murat Tasan; Christian Mosimann; John E Beaver; Eva Plovie; Logan A Carr; Hon Nian Chua; Julie Dunham; Khalid Zuberi; Harold Rodriguez; Quaid Morris; Leonard Zon; Frederick P Roth; Calum A MacRae
Journal:  Development       Date:  2014-01       Impact factor: 6.868

8.  In Vivo Surface Electrocardiography for Adult Zebrafish.

Authors:  Yali Zhao; Morgan Yun; Sean A Nguyen; Michelle Tran; Thao P Nguyen
Journal:  J Vis Exp       Date:  2019-08-01       Impact factor: 1.355

9.  Proliferation of embryonic cardiomyocytes in zebrafish requires the sodium channel scn5Lab.

Authors:  J S Bennett; D M Stroud; J R Becker; D M Roden
Journal:  Genesis       Date:  2013-06-25       Impact factor: 2.487

10.  Light-sheet Fluorescence Microscopy to Capture 4-Dimensional Images of the Effects of Modulating Shear Stress on the Developing Zebrafish Heart.

Authors:  Victoria Messerschmidt; Zachary Bailey; Kyung In Baek; Richard Bryant; Rongsong Li; Tzung K Hsiai; Juhyun Lee
Journal:  J Vis Exp       Date:  2018-08-10       Impact factor: 1.355

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