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含IgG的神经调节蛋白1亚型对斑马鱼心脏小梁形成并非必需。

IgG-Containing Isoforms of Neuregulin-1 Are Dispensable for Cardiac Trabeculation in Zebrafish.

作者信息

Samsa Leigh Ann, Ito Cade Ellis, Brown Daniel Ross, Qian Li, Liu Jiandong

机构信息

Department of Cell Biology and Physiology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America.

McAllister Heart Institute, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America.

出版信息

PLoS One. 2016 Nov 15;11(11):e0166734. doi: 10.1371/journal.pone.0166734. eCollection 2016.

Abstract

The Neuregulin-1 (Nrg1) signaling pathway has been widely implicated in many aspects of heart development including cardiac trabeculation. Cardiac trabeculation is an important morphogenetic process where clusters of ventricular cardiomyocytes extrude and expand into the lumen of the ventricular chambers. In mouse, Nrg1 isoforms containing an immunoglobulin-like (IgG) domain are essential for cardiac trabeculation through interaction with heterodimers of the epidermal growth factor-like (EGF-like) receptors ErbB2/ErbB4. Recent reports have underscored the importance of Nrg1 signaling in cardiac homeostasis and disease, however, placental development has precluded refined evaluation of the role of this pathway in mammals. ErbB2 has been shown to have a developmentally conserved role in cardiac trabeculation in zebrafish, a vertebrate model organism with completely external development, but the requirement for Nrg1 has not been examined. We found that among the multiple Nrg1 isoforms, the IgG domain-containing, type I Nrg1 (nrg1-I) is the only isoform detectable in the heart. Then, using CRISPR/Cas9 gene editing, we targeted the IgG domain of Nrg1 to produce novel alleles, nrg1nc28 and nrg1nc29, encoding nrg1-I and nrg1-II truncations. Our results indicated that zebrafish deficient for nrg1-I developed trabeculae in an ErbB2-dependent manner. Further, these mutants survive to reproductive adulthood with no overt cardiovascular defects. We also found that additional EGF-like ligands were expressed in the zebrafish heart during development of trabeculae. Together, these results suggest that Nrg1 is not the primary effector of trabeculation and/or that other EGF-like ligand(s) activates the ErbB2/ErbB4 pathway, either through functioning as the primary ligand or acting in a redundant manner. Overall, our work provides an example of cross-species differences in EGF family member requirements for an evolutionary conserved process.

摘要

神经调节蛋白-1(Nrg1)信号通路在心脏发育的许多方面,包括心脏小梁形成,都有广泛的牵连。心脏小梁形成是一个重要的形态发生过程,在此过程中,成群的心室心肌细胞突出并扩展到心室腔的内腔中。在小鼠中,含有免疫球蛋白样(IgG)结构域的Nrg1亚型通过与表皮生长因子样(EGF样)受体ErbB2/ErbB4的异二聚体相互作用,对心脏小梁形成至关重要。最近的报道强调了Nrg1信号在心脏稳态和疾病中的重要性,然而,胎盘发育阻碍了对该通路在哺乳动物中作用的精细评估。已证明ErbB2在斑马鱼(一种具有完全外部发育的脊椎动物模式生物)的心脏小梁形成中具有发育保守作用,但尚未研究对Nrg1的需求。我们发现,在多个Nrg1亚型中,含IgG结构域的I型Nrg1(nrg1-I)是心脏中唯一可检测到的亚型。然后利用CRISPR/Cas9基因编辑技术,我们靶向Nrg1的IgG结构域以产生新的等位基因nrg1nc28和nrg1nc29,它们编码nrg1-I和nrg1-II截短体。我们的结果表明,缺乏nrg1-I的斑马鱼以依赖ErbB2的方式形成小梁。此外,这些突变体存活至生殖成年期,没有明显的心血管缺陷。我们还发现,在小梁发育过程中,斑马鱼心脏中还表达了其他EGF样配体。总之,这些结果表明,Nrg1不是小梁形成的主要效应因子,和/或其他EGF样配体通过作为主要配体发挥作用或以冗余方式发挥作用来激活ErbB2/ErbB4通路。总体而言,我们的工作提供了一个跨物种差异的例子,即EGF家族成员对一个进化保守过程的需求存在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96ba/5112773/baa152ba2f48/pone.0166734.g001.jpg

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