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Two Japanese CADASIL families with a R141C mutation in the Notch3 gene.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a rare hereditary disease characterized by recurrent transient ischemic attacks (TIA) and strokes, and vascular dementia with Notch3 gene mutations as the cause of the disease. To date, there are only a few Japanese families ever reported with a mutation in the gene. Here, we report two more Japanese CADASIL families carrying a missense mutation in the Notch3 gene (R141C) with a unique lesion in the corpus callosum. This is the first report of two unrelated Japanese CADASIL families with a R141C mutation in the Notch3 gene. Although the disease is very rare among the Japanese population, our result suggests a possible relationship of this particular mutation (R141C) with the lesions of the corpus callosum.

Agenesis of Corpus Callosum↗

A novel mutation (C67Y)in the NOTCH3 gene in a Korean CADASIL patient.

We report a 52-yr-old Korean woman with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) whose diagnosis was confirmed by skin biopsy and the presence of a novel mutation in the NOTCH3 gene. The patient's clinical features were rather unusual in that 1) clinical presentations were only two episodes of stroke and mild dementia unaccompanied by mood disturbances or migraine, and 2) there was no family history. Brain MRI showed T2 hyperintensities in both temporal pole areas in line with the recent suggestion by O'Sullivan et al. that the abnormality could be a radiologic marker of CADASIL. FDG-PET also showed a hypometabolism in the temporal pole areas with an abnormal finding on MRI in addition to the hypometabolism in cortical and subcortical regions. We could learn from this case that CADASIL may be included in the differential diagnoses in patients with vascular dementia associated with a small vessel disease, even in the absence of a family history, especially when there are no known stroke risk factors and when the MRI shows T2 hyperintensity in the temporal pole regions.

Amino Acid Substitution↗

[CADASIL (cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy): clinical features and neuroimaging].

Recently identified in a french family, CADASIL (Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy) is a generalised disease of small arteries, largely predominating in the brain. Its clinical manifestations start during mid-adulthood and include recurrent ischaemic subcortical events, attacks of migraine with aura, severe mood disorders, subcortical dementia, and, at magnetic resonance imaging, widespread leuko-encephalopathy. There is so far no specific treatment and the mean duration of the disease is 20 years. CADASIL is most frequently a familial disorder with an autosomal dominant mode of transmission. Its responsible gene, Notch 3, is located on Chromosome 19. By the identification of its gene, CADASIL, (which is now known to affect over 400 families worldwide) is a unique variety of cerebro-vascular disease, affecting mainly the subcortical white matter.

Dementia, Multi-Infarct↗

[Report of a patient with CADASIL having a novel missense mutation of the Notch 3 gene--association with alopecia and lumbar herniated disk].

We report a 52-year-old man with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) presenting dementia, alopecia and lumbar herniated disk. He had an episode of stroke and migraine-like headache lasting for 5 minutes. A lot of members had cerebral infarction in this family. Brain magnetic resonance imaging demonstrated, on T2-weighted images, numerous hyperintense lesions suggestive of small infarcts in the basal ganglia and diffuse hyperintense lesions in the cerebral white matter. The clinical symptoms, the family history and the MRI findings suggested the diagnosis of CADASIL. However, the patient also showed alopecia and lumbar herniated disk, both are characteristic features of cerebral autosomal recessive arteriopathy with subcortical infarcts and leukoencephalopathy (CARASIL). The DNA analysis of the Notch 3 gene identified a novel missense mutation Cys174Phe in this patient. Our case report indicated the importance of the DNA analysis for the diagnosis of CADASIL.

Alopecia↗

[Molecular basis and physiopathogenic mechanisms of CADASIL: a model of small vessel diseases of the brain].

Diseases of the small cerebral arteries account for approximately 20% of the ischaemic strokes. Their diagnosis is difficult and their pathogenic mechanisms are yet unclear. A certain proportion of these diseases is familial. CADASIL is a recently identified small-artery disease of the brain, which occurs both as an autosomal dominant and a sporadic condition caused by mutations in the Notch3 gene. Since the acronym CADASIL was coined to designate this disorder in 1993, an exponentially growing number of patients has been identified all over the world. Notch3 belongs to the highly conserved Notch genes family which encode transmembrane receptors involved in cell fate specification during development. The role of Notch3 is so far unknown. We recently established that in normal adult tissues expression of Notch3 is essentially restricted to vessel and vascular smooth muscle cells (VSMC). CADASIL patients carry highly stereotyped mutations leading to an odd number of cysteine residues within the extracellular domain. Mutations are associated with an impaired clearance of the Notch3 protein leading to its abnormal accumulation at the membrane of VSMC. These data establish that VSMC is the primary target of the pathogenic process. In addition they give support to the role of the Notch3 pathway in vascular homeostasis. Furthermore, they open new perspectives in the field of small-artery diseases of the brain and should help to further dissect their genetic etiologies and understand their pathogenic mechanisms.

Cell Membrane↗

[Clinical and neuroimaging findings in a family with CADASIL associated to C475T mutation].

INTRODUCTION: The term CADASIL (cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy) refers to an autosomal dominant hereditary arteriopathy of the brain that is characterised by headache, recurring strokes and progressive cognitive deterioration. We report the case of another family with CADASIL and emphasise the importance of a genetic study in its diagnosis. CASE REPORT: A 62-year-old female patient with repeating lacunar strokes, subcortical dementia and a family history of dementia and strokes. Neuroimaging studies conducted on the patient and her siblings showed signs of leukoencephalopathy and lacunar infarctions. The ultrastructural study of the biopsy performed on a sample of the patient's skin, which included five dermal vessels, did not show any electron-dense deposits. The genetic study revealed the presence of mutation C475T in exon 4 of NOTCH3. CONCLUSIONS: The possible presence of CADASIL must be suspected in patients with symptoms of cerebrovascular disease or dementia who present characteristic alterations in the magnetic resonance brain scan, especially when there is a compatible family history. The first choice diagnostic procedure must be a genetic study.

Dementia, Multi-Infarct↗

["CADASIL"--a newly discovered hereditary cerebrovascular disease].

CADASIL (Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leucoencephalopathy) is a newly discovered inherited cerebrovascular disease characterized clinically by recurrent stroke-like incidents, dementia and often pseudobulbar palsy. Neuroimaging reveals intensive subcortical changes and pathologically one finds apparently systemic changes concerning the vessels such as thickening of the vessel wall, loss of smooth muscle cells and patches of granular material of unknown origin. The disease is not associated with atherosclerosis and vascular risk factors are missing or few. The CADASIL-locus maps to chromosome 19, but the gene has not yet been identified. Treatment and pathogenesis are unknown. In a Danish stroke population (The Copenhagen Stroke Study) no CADASIL-suspected cases were found among patients < or = 55 years, indicating a rare disease as far as Denmark is concerned.

Cerebral Arterial Diseases↗

CADASIL presenting with a movement disorder: a clinical study of a Chilean kindred.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a hereditary vascular disease that usually begins with migraine, followed by repeated strokes and progressive dementia. We describe an unusual clinical presentation of this condition in members of a Chilean family with an established NOTCH3 mutation. We report early clinical, neuropsychological, transcranial ultrasound, magnetic resonance imaging (MRI), cerebral blood flow, and skin biopsy findings on these patients. Of the patients, 2 presented with facial dystonia, 1 of whom had abnormal single photon emission computed tomography and transcranial ultrasound studies after normal brain MRI scans. Our report emphasizes that CADASIL must be considered in the study of patients with secondary dystonia.

Adult↗

The prenatal diagnosis of cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) by mutation analysis.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an important cause of hereditary stroke. Mutations in the Notch3 gene are clearly causally linked to this progressive vascular disorder. Cerebral ischemic attacks, cognitive decline, strokes, and vascular dementia constitute the major manifestations of this disorder. This report details the prenatal detection of a Notch3 mutation in the fetus of a couple where the father had a known mutation in this gene. This is the first report of a prenatal diagnosis of CADASIL, and another example of a serious, highly penetrant, and relentlessly progressive degenerative genetic disorder presenting decades after birth and for which prenatal diagnosis is an option.

Abortion, Eugenic↗

Two novel Italian CADASIL families from Central Italy with mutation CGC-TGC at codon 1006 in the exon 19 Notch3 gene.

Here we describe clinical, neuropsychological and neuroradiological findings in 6 subjects belonging to two unrelated Italian cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) kindreds from the same geographic area who shared a common Arg1006Cys mutation. Subjects from Family A were virtually asymptomatic, and yet showed MRI pathological findings and a cluster of sub-clinical neuropsychological defects mainly centred on the visuospatial domain; patients from Family B had presented several clinically relevant episodes and showed a general cognitive impairment compatible with the clinical picture of vascular dementia. The present clinical observations are consistent with the hypothesis of a geographical clustering for CADASIL, and highlight that sub-clinical cognitive impairment may help to identify this syndrome in families presenting with only migraine.

Aged↗

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) in a Chinese family: clinical, radiological and skin biopsy features.

We describe the clinical, radiological, genetic and skin biopsy findings of the first Chinese family with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL). Of the 43-member family tree extending over three generations, eight had typical clinical features of CADASIL with recurrent ischemic stroke. In the three surviving affected family members, brain MRI showed extensive leukoaraiosis. Genotyping revealed heterozygous C to T mutation at nucleotide 406 in exon 3. Unusual clinical features were cerebellar infarction as a presenting complaint and a late age of onset with mild symptoms at age 69. A novel finding is the suggestion of a direct correlation between clinical disease severity and the quantity of ultrastructural pathognomonic granular osmophilic material (GOM) seen on skin biopsy.

Aged↗

[CADASIL with minimal symptoms after 60 years].

INTRODUCTION: CADASIL is a hereditary cerebral arteriopathy leading to progressive disability and dementia usually observed at 60 years. OBSERVATION: We report four patients aged>60 years with typical Notch3 mutations leading to CADASIL who did not have dementia or disability. Three of them presented with only transient neurological manifestations. MRI results showed extensive hyperintense signals in the white-matter on T2-weighted images contrasting with very few lacunar infarcts. CONCLUSION: These observations suggest that silent or symptomatic infarcts, which were rare in the present cases may be responsible for the clinical severity in this disorder.

Aged↗

CADASIL-causing mutations do not alter Notch3 receptor processing and activation.

CADASIL is associated with mutations in the Notch3 gene but the causal mechanisms of the disorder remain unclear. We studied effects of widely established mutations on Notch3 receptor processing and ligand-mediated activation in stable lines of HEK293 and SH-SY5Y cells expressing either human wild-type or mutant Notch3 receptor. None of the four mutations (R90C, R133C, C185R and R449C) affected quantities of the full-length, amino-terminal or carboxyl-terminal fragments and did not impair intracellular trafficking in both cell types. The Jagged 1, Jagged 2 and Delta ligand-mediated S2 site cleavage and signal transduction were also observed to be similar in both wild-type and mutants, which exhibited similar rates of degradation of full-length, amino-terminal and carboxyl-terminal fragments. Our results suggest that the arteriopathy in CADASIL is caused by other mechanisms not necessarily involving Notch3 processing and activation.

Blotting, Western↗

Skin biopsy findings and results of neuropsychological testing in the first confirmed cases of CADASIL in Norway.

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is characterized by mutations in the notch3 gene. The mutation can be demonstrated by a gene test. The first group of Norwegian patients with CADASIL confirmed by gene testing was recently described. The present study includes six of the original nine patients with demonstrated notch3 mutation plus one patient with symptoms, who had been unwilling to go through gene testing. These seven patients underwent skin biopsy for electron microscopy. One patient was cognitively too impaired, but six went through neuropsychological testing. By electron microscopy characteristic granular osmiophilic material (GOM) was detected in all skin biopsies. The material is seen as granular deposits in the basal lamina of the smooth muscle layer, often making impressions upon adjacent smooth muscle cells. It seems important that blood vessels over a certain size (diameter >20 microm) are examined. A varying extent of cognitive decline was noted amongst all by neuropsychological testing. In cases with multiple infarctions reduction of perceptual speed, visuospatial skills and working memory could be demonstrated. Four patients showed executive dysfunction.

Adult↗

Neurologic symptoms are common during gestation and puerperium in CADASIL.

Based on a structured questionnaire and medical records, the authors found that 12 of 25 mothers with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) with the R133C NOTCH3 mutation had had neurologic symptoms in 17 of their 43 pregnancies, most commonly hemiparesthesia (76%), hemiparesis (36%), aphasia (65%), and visual disorders (47%). In 82% of the patients, the symptoms were the first manifestation of CADASIL. The symptoms were most common during puerperium and in patients older than age 30.

Adult↗

Large cerebral artery involvement in CADASIL.

The authors evaluated the involvement of large cerebral artery in 13 patients with cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) with angiography (12 MR and one conventional). Five patients (38%) showed stenosis: at the middle cerebral artery in three, vertebral artery in one, and the internal carotid artery in one. The stenosis persisted on follow-up angiogram in two patients. There were no differences in risk factors between patients with angiographic abnormality and those without, suggesting occasional involvement of large vessels in CADASIL.

Adult↗

Damage within a network of white matter regions underlies executive dysfunction in CADASIL.

OBJECTIVE: To identify the important sites of white matter disruption that underpin executive dysfunction in CADASIL (cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy), a genetic model of pure subcortical vascular disease. METHODS: The anatomic pattern of correlation between tissue integrity and executive function was explored with diffusion tensor imaging (DTI), which provides quantitative measures of tissue integrity. Eighteen nondemented patients with CADASIL underwent DTI and cognitive assessment. DTI was normalized to a standard template and correlations assessed at every voxel across the brain with Statistical Parametric Mapping with cluster-level correction for multiple comparisons. RESULTS: For executive tasks, correlations were found in a number of discrete regions in the white matter of the frontal lobes. A distinct, nonoverlapping pattern of correlation was seen for verbal memory. Significant independent correlations remained in some regions after co-varying for age and IQ. CONCLUSIONS: Different cognitive functions correlate with structural integrity at different sites in the white and subcortical gray matter. The distribution of regions correlating specifically with executive function provides clues to the organization of the relevant cognitive networks and their important white matter projections. The cingulum bundle is one candidate tract that may carry anteroposterior connections important for executive processes.

Adult↗

Varicose veins associated with CADASIL result from a novel mutation in the Notch3 gene.

No genetically diagnosed cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) pedigrees with venous insufficiency have been described. In a CADASIL pedigree with varicose veins, the authors have identified a novel heterozygous mutation in the 3' splice acceptor site of intron 15 of the Notch3 gene. This, based on mRNA analysis, resulted in skipping of exon 16 including eight cysteine residues of EGF-like repeats.

Adult↗