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本文引用的文献

1
Integrins: versatile integrators of extracellular signals.整合素:细胞外信号的多功能整合因子。
Trends Cell Biol. 2004 Dec;14(12):678-86. doi: 10.1016/j.tcb.2004.10.005.
2
TGF-beta-dependent pathogenesis of mitral valve prolapse in a mouse model of Marfan syndrome.马凡综合征小鼠模型中二尖瓣脱垂的转化生长因子-β依赖性发病机制
J Clin Invest. 2004 Dec;114(11):1586-92. doi: 10.1172/JCI22715.
3
Mechanisms of integration of cells and extracellular matrices by integrins.整合素介导细胞与细胞外基质整合的机制。
Biochem Soc Trans. 2004 Nov;32(Pt 5):822-5. doi: 10.1042/BST0320822.
4
Expression of VE-cadherin in zebrafish embryos: a new tool to evaluate vascular development.斑马鱼胚胎中血管内皮钙黏蛋白的表达:评估血管发育的新工具。
Dev Dyn. 2004 Sep;231(1):204-13. doi: 10.1002/dvdy.20102.
5
Mitogenic signal transduction by integrin- and growth factor receptor-mediated pathways.整合素和生长因子受体介导途径的促有丝分裂信号转导
Mol Cells. 2004 Apr 30;17(2):188-202.
6
Vascular morphogenesis and the formation of vascular networks.血管形态发生与血管网络的形成。
Dev Cell. 2004 Apr;6(4):479-82. doi: 10.1016/s1534-5807(04)00106-6.
7
Identifying secretomes in people, pufferfish and pigs.识别人类、河豚和猪的分泌蛋白组。
Nucleic Acids Res. 2004 Feb 27;32(4):1414-21. doi: 10.1093/nar/gkh286. Print 2004.
8
Aortic root surgery in Marfan syndrome: Comparison of aortic valve-sparing reimplantation versus composite grafting.马凡综合征的主动脉根部手术:保留主动脉瓣再植入术与复合移植术的比较。
J Thorac Cardiovasc Surg. 2004 Feb;127(2):391-8. doi: 10.1016/j.jtcvs.2003.07.049.
9
Acute type A aortic dissection complicated by aortic regurgitation: composite valve graft versus separate valve graft versus conservative valve repair.急性A型主动脉夹层合并主动脉瓣反流:复合瓣膜移植术与单独瓣膜移植术及保守瓣膜修复术的比较
J Thorac Cardiovasc Surg. 2003 Dec;126(6):1978-86. doi: 10.1016/s0022-5223(03)01279-0.
10
Molecular cloning and expression of a smooth muscle-specific gene SM22alpha in zebrafish.斑马鱼中平滑肌特异性基因SM22α的分子克隆与表达
Biochem Biophys Res Commun. 2003 Dec 19;312(3):741-6. doi: 10.1016/j.bbrc.2003.10.185.

斑马鱼微原纤维相关糖蛋白-1(Magp1)的体内功能分析揭示了微原纤维在血管发育和功能中的作用。

Functional analysis of zebrafish microfibril-associated glycoprotein-1 (Magp1) in vivo reveals roles for microfibrils in vascular development and function.

作者信息

Chen Eleanor, Larson Jon D, Ekker Stephen C

机构信息

Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Blood. 2006 Jun 1;107(11):4364-74. doi: 10.1182/blood-2005-02-0789. Epub 2006 Feb 9.

DOI:10.1182/blood-2005-02-0789
PMID:16469878
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1895789/
Abstract

Mutations in fibrillin-1 (FBN1) result in Marfan syndrome, demonstrating a critical requirement for microfibrils in vessel structure and function. However, the identity and function of many microfibril-associated molecules essential for vascular development and function have yet to be characterized. In our morpholino-based screen for members of the secretome required for vascular development, we identified a key player in microfibril formation in zebrafish embryogenesis. Microfibril-associated glycoprotein-1 (MAGP1) is a conserved protein found in mammalian and zebrafish microfibrils. Expression of magp1 mRNA is detected in microfibril-producing cells. Analysis of a functional Magp1-mRFP fusion protein reveals localization along the midline and in the vasculature during embryogenesis. Underexpression and overexpression analyses demonstrate that specific Magp1 protein levels are critical for vascular development. Integrin function is compromised in magp1 morphant embryos, suggesting that reduced integrin-matrix interaction is the main mechanism for the vascular defects in magp1 morphants. We further show that Magp1 and fibrillin-1 interact in vivo. This study implicates MAGP1 as a key player in microfibril formation and integrity during development. The essential role for MAGP1 in vascular morphogenesis and function also supports a wide range of clinical applications, including therapeutic targets in vascular disease and cardiovascular tissue engineering.

摘要

原纤蛋白-1(FBN1)的突变会导致马凡综合征,这表明微原纤维对血管结构和功能至关重要。然而,许多对血管发育和功能必不可少的微原纤维相关分子的身份和功能尚未得到表征。在我们基于吗啉代的血管发育所需分泌组成员筛选中,我们在斑马鱼胚胎发育过程中确定了微原纤维形成的关键参与者。微原纤维相关糖蛋白-1(MAGP1)是一种在哺乳动物和斑马鱼微原纤维中发现的保守蛋白。在产生微原纤维的细胞中检测到magp1 mRNA的表达。对功能性Magp1-mRFP融合蛋白的分析揭示了其在胚胎发育过程中沿中线和血管系统中的定位。表达不足和过表达分析表明,特定的Magp1蛋白水平对血管发育至关重要。在magp1 morphant胚胎中整合素功能受损,这表明整合素-基质相互作用减少是magp1 morphant胚胎血管缺陷的主要机制。我们进一步表明Magp1和原纤蛋白-1在体内相互作用。这项研究表明MAGP1是发育过程中微原纤维形成和完整性的关键参与者。MAGP1在血管形态发生和功能中的重要作用也支持了广泛的临床应用,包括血管疾病的治疗靶点和心血管组织工程。