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通过 BMP 受体 ACVR1 条件性激活信号生成新的小鼠品系:一种用于表征 BMP 功能多效性作用的工具。

Generation of a new mouse line with conditionally activated signaling through the BMP receptor, ACVR1: A tool to characterize pleiotropic roles of BMP functions.

机构信息

The State Key Laboratory Breeding Base of Basic Science of Stomatology & Key Laboratory for Oral Biomedicine of Ministry of Education, School and Hospital of Stomatology, Wuhan University, Wuhan, Hubei, 430079, China.

Department of Biologic and Materials Sciences & Prosthodontics, School of Dentistry, University of Michigan, MI, USA.

出版信息

Genesis. 2021 Jun;59(5-6):e23419. doi: 10.1002/dvg.23419. Epub 2021 Apr 14.

Abstract

BMP signaling plays pleiotropic roles in various tissues during embryogenesis and after birth. We have previously generated a constitutively activated Acvr1(ca-Acvr1) transgenic mouse line (line L35) through pronuclei injection to investigate impacts of enhanced BMP signaling in a tissue specific manner. However, line L35 shows a restricted expression pattern of the transgene. Here, we generated another ca-Acvr1 transgenic line, line A11, using embryonic stem (ES) transgenesis. The generated line A11 shows distinctive phenotypes from line L35, along with very limited expression levels of the transgene. When the transgene is activated in the neural crest cells in a Cre-dependent manner, line A11 exhibits cleft palate and shorter jaws, while line L35 develops ectopic cartilages and highly hypomorphic facial structures. When activated in limb buds, line A11 develops organized but smaller limb skeletal structures, while line L35 forms disorganized limbs with little mineralization. Additionally, no heterotopic ossification (HO) is identified in line A11 when bred with NFATc1-Cre mice even after induction of tissue injury, which is an established protocol for HO for line L35. Therefore, the newly generated conditional ca-Acvr1 mouse line A11 provides an additional resource to dissect highly context dependent functions of BMP signaling in development and disease.

摘要

BMP 信号在胚胎发生和出生后在各种组织中发挥多种作用。我们之前通过原核注射生成了一个组成型激活 Acvr1(ca-Acvr1)转基因小鼠品系(L35 品系),以研究增强的 BMP 信号在组织特异性方面的影响。然而,L35 品系显示转基因的表达模式受到限制。在这里,我们使用胚胎干细胞(ES)转基因技术生成了另一个 ca-Acvr1 转基因品系 A11。生成的 A11 品系与 L35 品系表现出不同的表型,同时转基因的表达水平非常有限。当转基因在神经嵴细胞中以 Cre 依赖性方式激活时,A11 品系表现出口裂和下颌缩短,而 L35 品系则形成异位软骨和高度低形成的面部结构。当在肢芽中激活时,A11 品系形成有组织但较小的肢骨骼结构,而 L35 品系形成无组织的肢,矿化程度低。此外,即使在用 NFATc1-Cre 小鼠进行组织损伤诱导后,与 A11 品系杂交也未发现异位骨化(HO),这是 L35 品系中 HO 的既定方案。因此,新生成的条件性 ca-Acvr1 小鼠品系 A11 为剖析 BMP 信号在发育和疾病中的高度依赖于上下文的功能提供了另一种资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8e9/8206043/1277e6b8765d/nihms-1707845-f0001.jpg

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