Rationale: Somatic overexpression in mice using an adeno-associated virus (AAV) as gene transfer vectors has become a valuable tool to analyze the roles of specific genes in cardiac diseases. The lack of atrial-specific AAV vector has been a major obstacle for studies into the pathogenesis of atrial diseases. Moreover, gene therapy studies for atrial fibrillation would benefit from atrial-specific vectors. Atrial natriuretic factor (ANF) promoter drives gene expression specifically in atrial cardiomyocytes. Objective: To establish the platform of atrial specific in vivo gene delivery by AAV-ANF. Methods and Results: We constructed AAV vectors based on serotype 9 (AAV9) that are driven by the atrial-specific ANF promoter. Hearts from mice injected with AAV9-ANF-GFP (green fluorescent protein) exhibited strong and atrial-specific GFP expression without notable GFP in ventricular tissue. In contrast, similar vectors containing a cardiac troponin T promoter (AAV9-TNT4-GFP) showed GFP expression in all 4 chambers of the heart, while AAV9 with an enhanced chicken beta-actin promoter (AAV-enCB-GFP) caused ubiquitous GFP expression. Next, we used Rosa26(mT/mG) (membrane-targeted tandem dimer Tomato/membrane-targeted GFP), a double-fluorescent Cre reporter mouse that expresses membrane-targeted tandem dimer Tomato before Cre-mediated excision, and membrane-targeted GFP after excision. AAV9-ANF-Cre led to highly efficient LoxP recombination in membranetargeted tandem dimer Tomato/membrane-targeted green fluorescent protein mice with high specificity for the atria. We measured the frequency of transduced cardiomyocytes in atria by detecting Cre-dependent GFP expression from the Rosa26(mT/mG) allele. AAV9 dose was positively correlated with the number of GFP-positive atrial cardiomyocytes. Finally, we assessed whether the AAV9-ANF-Cre vector could be used to induce atrial-specific gene knockdown in proof-of-principle experiments using conditional JPH2 (junctophilin-2) knockdown mice. Four weeks after AAV9ANF- Cre injection, a strong reduction in atrial expression of JPH2 protein was observed. Furthermore, there was evidence for abnormal Ca2+ handling in atrial myocytes isolated from mice with atrial-restricted JPH2 deficiency. Conclusions: AAV9-ANF vectors produce efficient, dose-dependent, and atrial-specific gene expression following a single-dose systemic delivery in mice. This vector is a novel reagent for both mechanistic and gene therapy studies on atrial diseases.
基金:
National Natural Science Foundation of China (NSFC) [81470519]; National Institutes of Health [F30-HL140782, R56-HL131649, R01-HL136389, R01-HL132840, R01-HL089598, R01-HL091947, R01-HL117641]; American Heart Association [17CPRE33660059, 14SDG20080008]; Individual Investigator Research Grant Award from the RYR1 foundation; Saving Tiny Hearts Foundation
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外文
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中科院(CAS)分区:
出版当年[2018]版:
大类|1 区医学
小类|1 区心脏和心血管系统1 区血液学1 区外周血管病
最新[2025]版:
大类|1 区医学
小类|1 区心脏和心血管系统1 区血液学1 区外周血管病
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出版当年[2017]版:
Q1HEMATOLOGYQ1PERIPHERAL VASCULAR DISEASEQ1CARDIAC & CARDIOVASCULAR SYSTEMS
Ni Li,Scott Larry Jr.,Campbell Hannah M.,et al.Atrial-Specific Gene Delivery Using an Adeno-Associated Viral Vector[J].CIRCULATION RESEARCH.2019,124(2):256-262.doi:10.1161/CIRCRESAHA.118.313811.
APA:
Ni, Li,Scott, Larry, Jr.,Campbell, Hannah M.,Pan, Xiaolu,Alsina, Katherina M....&Wehrens, Xander H. T..(2019).Atrial-Specific Gene Delivery Using an Adeno-Associated Viral Vector.CIRCULATION RESEARCH,124,(2)
MLA:
Ni, Li,et al."Atrial-Specific Gene Delivery Using an Adeno-Associated Viral Vector".CIRCULATION RESEARCH 124..2(2019):256-262