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Citations to this article

Evidence for a critical contribution of haploinsufficiency in the complex pathogenesis of Marfan syndrome
Daniel P. Judge, … , Lynn Y. Sakai, Harry C. Dietz
Daniel P. Judge, … , Lynn Y. Sakai, Harry C. Dietz
Published July 15, 2004
Citation Information: J Clin Invest. 2004;114(2):172-181. https://doi.org/10.1172/JCI20641.
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Article Cardiology Article has an altmetric score of 11

Evidence for a critical contribution of haploinsufficiency in the complex pathogenesis of Marfan syndrome

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Abstract

Marfan syndrome is a connective tissue disorder caused by mutations in the gene encoding fibrillin-1 (FBN1). A dominant-negative mechanism has been inferred based upon dominant inheritance, mulitimerization of monomers to form microfibrils, and the dramatic paucity of matrix-incorporated fibrillin-1 seen in heterozygous patient samples. Yeast artificial chromosome–based transgenesis was used to overexpress a disease-associated mutant form of human fibrillin-1 (C1663R) on a normal mouse background. Remarkably, these mice failed to show any abnormalities of cellular or clinical phenotype despite regulated overexpression of mutant protein in relevant tissues and developmental stages and direct evidence that mouse and human fibrillin-1 interact with high efficiency. Immunostaining with a human-specific mAb provides what we believe to be the first demonstration that mutant fibrillin-1 can participate in productive microfibrillar assembly. Informatively, use of homologous recombination to generate mice heterozygous for a comparable missense mutation (C1039G) revealed impaired microfibrillar deposition, skeletal deformity, and progressive deterioration of aortic wall architecture, comparable to characteristics of the human condition. These data are consistent with a model that invokes haploinsufficiency for WT fibrillin-1, rather than production of mutant protein, as the primary determinant of failed microfibrillar assembly. In keeping with this model, introduction of a WT FBN1 transgene on a heterozygous C1039G background rescues aortic phenotype.

Authors

Daniel P. Judge, Nancy J. Biery, Douglas R. Keene, Jessica Geubtner, Loretha Myers, David L. Huso, Lynn Y. Sakai, Harry C. Dietz

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006 2005 2004 Total
Citations: 12 18 12 18 15 15 11 16 13 13 10 11 2 11 12 13 6 2 4 3 2 2 221
Citation information
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Citations to this article in year 2006 (3)

Title and authors Publication Year
The molecular genetics of Marfan syndrome and related disorders
PN Robinson, E Arteaga-Solis, C Baldock, G Collod-Béroud, P Booms, AD Paepe, HC Dietz, G Guo, PA Handford, DP Judge, CM Kielty, B Loeys, DM Milewicz, A Ney, F Ramirez, DP Reinhardt, K Tiedemann, P Whiteman, M Godfrey
Journal of medical genetics 2006
Recent progress in genetics of Marfan syndrome and Marfan-associated disorders
T Mizuguchi, N Matsumoto
Journal of Human Genetics 2006
Losartan, an AT1 Antagonist, Prevents Aortic Aneurysm in a Mouse Model of Marfan Syndrome
JP Habashi, DP Judge, TM Holm, RD Cohn, BL Loeys, TK Cooper, L Myers, EC Klein, G Liu, C Calvi, M Podowski, ER Neptune, MK Halushka, D Bedja, K Gabrielson, DB Rifkin, L Carta, F Ramirez, DL Huso, HC Dietz
Science 2006

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