Literature DB >> 17622327

Proteome analysis of cultivated vascular smooth muscle cells from a CADASIL patient.

Saara Ihalainen1, Rabah Soliymani, Erika Iivanainen, Kati Mykkänen, Annele Sainio, Minna Pöyhönen, Klaus Elenius, Hannu Järveläinen, Matti Viitanen, Hannu Kalimo, Marc Baumann.   

Abstract

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a vascular dementing disease caused by mutations in the NOTCH3 gene, most which are missense mutations leading to an uneven number of cysteine residues in epidermal growth factor-like repeats in the extracellular domain of Notch3 receptor (N3ECD). CADASIL is characterized by degeneration of vascular smooth muscle cells (VSMC) and accumulation of N3ECD on the VSMCs of small and middle-sized arteries. Recent studies have demonstrated that impairment of Notch3 signaling is not the primary cause of the disease. In the present study we used proteomic analysis to characterize the protein expression pattern of a unique material of genetically genuine cultured human CADASIL VSMCs. We identified 11 differentially expressed proteins, which are involved in protein degradation and folding, contraction of VSMCs, and cellular stress. Our findings indicate that misfolding of Notch3 may cause endoplasmic reticulum stress and activation of unfolded protein response, leading to increased reactive oxygen species and inhibition of cell proliferation. In addition, upregulation of contractile proteins suggests an alteration in the signaling system of VSMC contraction. The accumulation of N3ECD on the cell surface possibly upregulates the angiotensin II regulatory feedback loop and thereby enhances the readiness of the cells to respond to angiotensin II stimulation.

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Year:  2007        PMID: 17622327      PMCID: PMC1906681          DOI: 10.2119/2006–00069.Ihalainen

Source DB:  PubMed          Journal:  Mol Med        ISSN: 1076-1551            Impact factor:   6.354


  77 in total

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Authors:  K D Wilkinson
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Authors:  A Joutel; K Vahedi; C Corpechot; A Troesch; H Chabriat; C Vayssière; C Cruaud; J Maciazek; J Weissenbach; M G Bousser; J F Bach; E Tournier-Lasserve
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  12 in total

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2.  A novel cysteine-sparing G73A mutation of NOTCH3 in a Chinese CADASIL family.

Authors:  Liyan Huang; Wei Li; Yi Li; Chaoyuan Song; Pin Wang; Hongchun Wang; Xiulian Sun
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3.  Homozygous NOTCH3 null mutation and impaired NOTCH3 signaling in recessive early-onset arteriopathy and cavitating leukoencephalopathy.

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5.  ER stress and Rho kinase activation underlie the vasculopathy of CADASIL.

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10.  Insulin-Independent and Dependent Glucose Transporters in Brain Mural Cells in CADASIL.

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