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使用CASAAV分析心肌细胞成熟,CASAAV是一种用于在体内快速剖析心肌细胞基因功能的平台。

Analysis of Cardiac Myocyte Maturation Using CASAAV, a Platform for Rapid Dissection of Cardiac Myocyte Gene Function In Vivo.

作者信息

Guo Yuxuan, VanDusen Nathan J, Zhang Lina, Gu Weiliang, Sethi Isha, Guatimosim Silvia, Ma Qing, Jardin Blake D, Ai Yulan, Zhang Donghui, Chen Biyi, Guo Ang, Yuan Guo-Cheng, Song Long-Sheng, Pu William T

机构信息

From the Cardiology, Boston Children's Hospital, MA (Y.G., N.J.V., Q.M., B.D.J., Y.A., D.Z., W.T.P.); Institute of Basic Medicine (L.Z.) and Pharmacology, School of Pharmacy (W.G.), Shanghai University of Traditional Chinese Medicine, China; Biostatistics and Computational Biology, Dana-Farber Cancer Institute, Boston, MA (I.S., G.-C.Y.); Physiology and Biophysics, Institute of Biological Sciences, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil (S.G.); Cardiovascular Medicine, Department of Internal Medicine, François M. Abboud Cardiovascular Research Center, University of Iowa Carver College of Medicine, Iowa City (B.C., A.G., L.-S.S.); Veterans Affairs Medical Center, Iowa City (L.-S.S.); and Harvard Stem Cell Institute, Cambridge, MA (W.T.P.).

出版信息

Circ Res. 2017 Jun 9;120(12):1874-1888. doi: 10.1161/CIRCRESAHA.116.310283. Epub 2017 Mar 29.

Abstract

RATIONALE

Loss-of-function studies in cardiac myocytes (CMs) are currently limited by the need for appropriate conditional knockout alleles. The factors that regulate CM maturation are poorly understood. Previous studies on CM maturation have been confounded by heart dysfunction caused by whole organ gene inactivation.

OBJECTIVE

To develop a new technical platform to rapidly characterize cell-autonomous gene function in postnatal murine CMs and apply it to identify genes that regulate transverse tubules (T-tubules), a hallmark of mature CMs.

METHODS AND RESULTS

We developed CRISPR/Cas9/AAV9-based somatic mutagenesis, a platform in which AAV9 delivers tandem guide RNAs targeting a gene of interest and cardiac troponin-T promoter-driven Cre to neonatal mice. When directed against junctophilin-2 (), a gene previously implicated in T-tubule maturation, we achieved efficient, rapid, and CM-specific JPH2 depletion. High-dose AAV9 ablated JPH2 in 64% CMs and caused lethal heart failure, whereas low-dose AAV9 ablated JPH2 in 22% CMs and preserved normal heart function. In the context of preserved heart function, CMs lacking JPH2 developed T-tubules that were nearly morphologically normal, indicating that JPH2 does not have a major, cell-autonomous role in T-tubule maturation. However, in hearts with severe dysfunction, both adeno-associated virus-transduced and nontransduced CMs exhibited T-tubule disruption, which was more severe in the transduced subset. These data indicate that cardiac dysfunction disrupts T-tubule structure and that JPH2 protects T-tubules in this context. We then used CRISPR/Cas9/AAV9-based somatic mutagenesis to screen 8 additional genes for required, cell-autonomous roles in T-tubule formation. We identified RYR2 (Ryanodine Receptor-2) as a novel, cell-autonomously required T-tubule maturation factor.

CONCLUSIONS

CRISPR/Cas9/AAV9-based somatic mutagenesis is a powerful tool to study cell-autonomous gene functions. Genetic mosaics are invaluable to accurately define cell-autonomous gene function. JPH2 has a minor role in normal T-tubule maturation but is required to stabilize T-tubules in the failing heart. RYR2 is a novel T-tubule maturation factor.

摘要

原理

心肌细胞(CMs)功能丧失研究目前受到对合适的条件性敲除等位基因需求的限制。调节CM成熟的因素了解甚少。先前关于CM成熟的研究因全器官基因失活导致的心脏功能障碍而混淆。

目的

开发一种新技术平台,以快速表征出生后小鼠CMs中的细胞自主基因功能,并将其应用于鉴定调节横管(T管)的基因,T管是成熟CMs的一个标志。

方法与结果

我们开发了基于CRISPR/Cas9/AAV9的体细胞诱变技术,该平台中AAV9将靶向感兴趣基因的串联引导RNA和心肌肌钙蛋白-T启动子驱动的Cre递送至新生小鼠。当针对junctophilin-2(JPH2)(一种先前与T管成熟有关的基因)时,我们实现了高效、快速且CM特异性的JPH2缺失。高剂量AAV9在64%的CMs中消除了JPH2,并导致致命性心力衰竭,而低剂量AAV9在22%的CMs中消除了JPH2,并保留了正常心脏功能。在心脏功能保留的情况下,缺乏JPH2的CMs形成了形态上几乎正常的T管,这表明JPH2在T管成熟中没有主要的细胞自主作用。然而,在严重功能障碍的心脏中,腺相关病毒转导和未转导的CMs均表现出T管破坏,在转导亚组中更为严重。这些数据表明心脏功能障碍会破坏T管结构,并且在这种情况下JPH2可保护T管。然后,我们使用基于CRISPR/Cas9/AAV9的体细胞诱变技术筛选另外8个基因在T管形成中所需的细胞自主作用。我们鉴定出兰尼碱受体2(RYR2)是一种新型的、细胞自主所需的T管成熟因子。

结论

基于CRISPR/Cas9/AAV9的体细胞诱变技术是研究细胞自主基因功能的有力工具。基因嵌合体对于准确界定细胞自主基因功能非常重要。JPH2在正常T管成熟中作用较小,但在衰竭心脏中对稳定T管是必需的。RYR2是一种新型的T管成熟因子。

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