Three out of the top four most lethal heart defects are neural crest-related and account for 70% of the total cost of treating congenital heart disease. Prior work identified impaired cardiac excitation-contraction (EC) coupling as the major functional deficit in neural crest-ablated chick embryo. Markedly reduced intracellular Ca2+ transients due to reduced L-type Ca2+ current, decreased Ca2+ uptake into the sarcoplasmic reticulum (SR) and reduced SR Ca2+-induced Ca2+ release (CICR) was documented in myocytes and isolated trabeculae. Furthermore, the average force per crossbridge was decreased.
Aim 1 will test the new hypothesis that reduced cardiac L-type Ca2+ current is due to decreased function and/or expression of L-type Ca2+ channels in embryonic heart after neural crest ablation. Experiments are designed to determine if newly synthesized Ca2+ channels are inserted into the sarcolemma; whether single channel activity is reduced; and whether there is altered expression of Ca2+ channel subunits in neural crest-ablated embryos.
Aim 2 will test the new hypothesis that CICR is impaired irrespective of the availability of extracellular """"""""trigger"""""""" Ca2+ following neural crest ablation. Experiments are designed to determine whether there is decreased Ca2+ sensitivity of CICR; whether peripheral couplings between surface membrane and SR are mature; and whether gain of CICR is reduced.
Aim 3 will test the new hypothesis that one of two mechanisms impairs force produce by the contractile apparatus in embryonic ventricle following crest ablation. It will be determined whether cross-bridge function is normal but parallel elasticity (that absorbs much of the work produced by the cross-bridges) is increased; or whether cross-bridge function is abnormal. The results from these studies will provide new information that could lead to improved care and treatment of infants with congenital heart disease.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
7P01HL036059-15
Application #
6500483
Study Section
Project Start
2001-04-01
Project End
2002-03-31
Budget Start
Budget End
Support Year
15
Fiscal Year
2001
Total Cost
Indirect Cost
Name
Medical College of Georgia (MCG)
Department
Type
DUNS #
City
Augusta
State
GA
Country
United States
Zip Code
30912
Palatinus, Joseph A; O'Quinn, Michael P; Barker, Ralph J et al. (2011) ZO-1 determines adherens and gap junction localization at intercalated disks. Am J Physiol Heart Circ Physiol 300:H583-94
Evans, Sylvia M; Yelon, Deborah; Conlon, Frank L et al. (2010) Myocardial lineage development. Circ Res 107:1428-44
Kirby, Margaret L; Hutson, Mary R (2010) Factors controlling cardiac neural crest cell migration. Cell Adh Migr 4:609-21
Hutson, Mary Redmond; Zeng, Xiaopei Lily; Kim, Andrew J et al. (2010) Arterial pole progenitors interpret opposing FGF/BMP signals to proliferate or differentiate. Development 137:3001-11
Hutson, Mary Redmond; Sackey, Faustina N; Lunney, Katherine et al. (2009) Blocking hedgehog signaling after ablation of the dorsal neural tube allows regeneration of the cardiac neural crest and rescue of outflow tract septation. Dev Biol 335:367-73
Gurjarpadhye, Abhijit; Hewett, Kenneth W; Justus, Charles et al. (2007) Cardiac neural crest ablation inhibits compaction and electrical function of conduction system bundles. Am J Physiol Heart Circ Physiol 292:H1291-300
Graham, Victoria; Zhang, Hengtao; Willis, Shannon et al. (2006) Expression of a two-pore domain K+ channel (TASK-1) in developing avian and mouse ventricular conduction systems. Dev Dyn 235:143-51
Hutson, Mary R; Zhang, Ping; Stadt, Harriett A et al. (2006) Cardiac arterial pole alignment is sensitive to FGF8 signaling in the pharynx. Dev Biol 295:486-97
Lindsey, Merry L; Escobar, G Patricia; Mukherjee, Rupak et al. (2006) Matrix metalloproteinase-7 affects connexin-43 levels, electrical conduction, and survival after myocardial infarction. Circulation 113:2919-28
Gourdie, Robert G; Ghatnekar, Gautam S; O'Quinn, Michael et al. (2006) The unstoppable connexin43 carboxyl-terminus: new roles in gap junction organization and wound healing. Ann N Y Acad Sci 1080:49-62

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