Author
Listed:
- You Li
(University of Pittsburgh School of Medicine)
- Nikolai T. Klena
(University of Pittsburgh School of Medicine)
- George C. Gabriel
(University of Pittsburgh School of Medicine)
- Xiaoqin Liu
(University of Pittsburgh School of Medicine)
- Andrew J. Kim
(University of Pittsburgh School of Medicine)
- Kristi Lemke
(University of Pittsburgh School of Medicine)
- Yu Chen
(University of Pittsburgh School of Medicine)
- Bishwanath Chatterjee
(University of Pittsburgh School of Medicine)
- William Devine
(University of Pittsburgh School of Medicine)
- Rama Rao Damerla
(University of Pittsburgh School of Medicine)
- Chienfu Chang
(University of Pittsburgh School of Medicine)
- Hisato Yagi
(University of Pittsburgh School of Medicine)
- Jovenal T. San Agustin
(Program in Molecular Medicine, University of Massachusetts Medical School)
- Mohamed Thahir
(University of Pittsburgh School of Medicine
Intelligent Systems Program, School of Arts and Sciences, University of Pittsburgh)
- Shane Anderton
(University of Pittsburgh School of Medicine)
- Caroline Lawhead
(University of Pittsburgh School of Medicine)
- Anita Vescovi
(University of Pittsburgh School of Medicine)
- Herbert Pratt
(The Jackson Laboratory)
- Judy Morgan
(The Jackson Laboratory)
- Leslie Haynes
(The Jackson Laboratory)
- Cynthia L. Smith
(The Jackson Laboratory)
- Janan T. Eppig
(The Jackson Laboratory)
- Laura Reinholdt
(The Jackson Laboratory)
- Richard Francis
(University of Pittsburgh School of Medicine)
- Linda Leatherbury
(The Heart Center, Children’s National Medical Center)
- Madhavi K. Ganapathiraju
(University of Pittsburgh School of Medicine
Intelligent Systems Program, School of Arts and Sciences, University of Pittsburgh)
- Kimimasa Tobita
(University of Pittsburgh School of Medicine)
- Gregory J. Pazour
(Program in Molecular Medicine, University of Massachusetts Medical School)
- Cecilia W. Lo
(University of Pittsburgh School of Medicine)
Abstract
A forward genetic screen in fetal mice to identify genes involved in congenital heart disease (CHD) reveals that a large proportion of genes associated with CHD are related to cilia and cilia-transduced cell signalling, with potential implications for the human disease.
Suggested Citation
You Li & Nikolai T. Klena & George C. Gabriel & Xiaoqin Liu & Andrew J. Kim & Kristi Lemke & Yu Chen & Bishwanath Chatterjee & William Devine & Rama Rao Damerla & Chienfu Chang & Hisato Yagi & Jovenal, 2015.
"Global genetic analysis in mice unveils central role for cilia in congenital heart disease,"
Nature, Nature, vol. 521(7553), pages 520-524, May.
Handle:
RePEc:nat:nature:v:521:y:2015:i:7553:d:10.1038_nature14269
DOI: 10.1038/nature14269
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Citations
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Cited by:
- Mark E. Becker & Laura Martin-Sancho & Lacy M. Simons & Michael D. McRaven & Sumit K. Chanda & Judd F. Hultquist & Thomas J. Hope, 2024.
"Live imaging of airway epithelium reveals that mucociliary clearance modulates SARS-CoV-2 spread,"
Nature Communications, Nature, vol. 15(1), pages 1-17, December.
- Wei Feng & Abha Bais & Haoting He & Cassandra Rios & Shan Jiang & Juan Xu & Cindy Chang & Dennis Kostka & Guang Li, 2022.
"Single-cell transcriptomic analysis identifies murine heart molecular features at embryonic and neonatal stages,"
Nature Communications, Nature, vol. 13(1), pages 1-19, December.
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