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Anne Joutel, Fréderic Andreux, Swann Gaulis, Valérie Domenga, Michaelle Cecillon, Nicole Battail, Nadia Piga, Françoise Chapon, Catherine Godfrain, Elisabeth Tournier-Lasserve
J Clin Invest. 2000;
105(5):597
doi:10.1172/JCI8047
Abstract |
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M
utations in Notch3 cause CADASIL (cerebral autosomal dominant adult onset arteriopathy), which leads to stroke and dementia in humans. CADASIL arteriopathy is characterized by major alterations of vascular smooth muscle cells and the presence of specific granular osmiophilic deposits. Patients carry highly stereotyped mutations that lead to an odd number of cysteine residues within EGF-like repeats of the Notch3 receptor extracellular domain. Such mutations may alter the processing or the trafficking of this receptor, or may favor its oligomerization. In this study, we examined the Notch3 expression pattern in normal tissues and investigated the consequences of mutations on Notch3 expression in transfected cells and CADASIL brains. In normal tissues, Notch3 expression is restricted to vascular smooth muscle cells. Notch3 undergoes a proteolytic cleavage leading to a 210-kDa extracellular fragment and a 97-kDa intracellular fragment. In CADASIL brains, we found evidence of a dramatic and selective accumulation of the 210-kDa Notch3 cleavage product. Notch3 accumulates at the cytoplasmic membrane of vascular smooth muscle cells, in close vicinity to but not within the granular osmiophilic material. These results strongly suggest that CADASIL mutations specifically impair the clearance of the Notch3 ectodomain, but not the cytosolic domain, from the cell surface.
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| Title and authors |
Publication |
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Animal Models of Molecular Pathology
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2012 |
Simultaneous Impairment of Intracranial and Peripheral Artery Vasoreactivity in CADASIL Patients
Yasuhiro Fujiwara, Toshiki Mizuno, Chio Okuyama, Yoshinari Nagakane, Akiko Watanabe-Hosomi, Masaki Kondo, Nagato Kuriyama, Takahiko Tokuda, Shigenori Matsushima, Tsunehiko Nishimura
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Cerebrovasc Dis
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BILATERAL PRESUMED ISCHEMIC OPTIC NEUROPATHY SECONDARY TO CEREBRAL AUTOSOMAL DOMINANT ARTERIOPATHY WITH SUBCORTICAL INFARCTS AND LEUKOENCEPHALOPATHY :
Lucy E Barker, Graham M Thompson
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Retinal Cases & Brief Reports
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2012 |
Human peripheral blood lymphocytes and fibroblasts as Notch3 expression models
Giuseppe Di Maio, Patrizia Formichi, Elena Radi, Silvia Bianchi, Anna Onnis, Ermelinda Tarquini, Lorenzo Leoncini, Antonio Federico
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J. Cell. Physiol.
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2012 |
Pericytes as a new target for pathological processes in CADASIL : Pericytes in CADASIL
Dorota Dziewulska, Eliza Lewandowska
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Neuropathology
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2012 |
Two Novel Mutations and a previously unreported intronic polymorphism in the NOTCH3 gene
B. Roy, N. Maksemous, R.A. Smith, S. Menon, G. Davies, L. Griffiths
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Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis
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2012 |
Notch signalling in smooth muscle cells during development and disease
C. Fouillade, M. Monet-Lepretre, C. Baron-Menguy, A. Joutel
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Cardiovascular Research
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2012 |
Notch3 signalling promotes tumour growth in colorectal cancer
Valentina Serafin, Luca Persano, Lidia Moserle, Giovanni Esposito, Margherita Ghisi, Matteo Curtarello, Laura Bonanno, Massimo Masiero, Domenico Ribatti, Michael Stürzl, Elisabeth Naschberger, Roland S Croner, Adrian M Jubb, Adrian L Harris, Hartmut Koeppen, Alberto Amadori, Stefano Indraccolo
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J. Pathol.
|
2011 |
Co-aggregate formation of CADASIL-mutant NOTCH3: a single-particle analysis
M. Duering, A. Karpinska, S. Rosner, F. Hopfner, M. Zechmeister, N. Peters, E. Kremmer, C. Haffner, A. Giese, M. Dichgans, C. Opherk
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Human Molecular Genetics
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2011 |
PNAS Plus: Hypomorphic Notch 3 alleles link Notch signaling to ischemic cerebral small-vessel disease
J. F. Arboleda-Velasquez, J. Manent, J. H. Lee, S. Tikka, C. Ospina, C. R. Vanderburg, M. P. Frosch, M. Rodriguez-Falcon, J. Villen, S. Gygi, F. Lopera, H. Kalimo, M. A. Moskowitz, C. Ayata, A. Louvi, S. Artavanis-Tsakonas
|
Proceedings of the National Academy of Sciences
|
2011 |
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