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P Heutink

Publications and source records attributed to P Heutink.

At least 19 recordsLinked to original sources

Genetic and clinical analysis of a large Dutch Gilles de la Tourette family.

Gilles de la Tourette syndrome is a complex neuropsychiatric disorder, which becomes evident in childhood between the ages of 2 and 15 years. Tourette syndrome is defined by the occurrence of a large range and variable number of unwanted repetitive simple or complex motor and vocal tics that start in childhood and follow a waxing and waning course. A major gene for this syndrome has not yet been identified, probably owing to both genetic and phenotypic heterogeneity of this disease. This article describes the clinical evaluation of patients and family members in a large Dutch Gilles de la Tourette Syndrome pedigree and the decisions encountered with respect to phenotyping. The importance of an accurate definition of the Tourette phenotype is discussed, which is highly important for reliable genetic linkage and association studies. Subsequent linkage analysis resulted in three linkage peaks on different chromosomes 3q, 9q, and 13q. Multipoint analysis resulted in a single linkage peak with logarithm of odds score 2.55 with marker D3S1311 on chromosome 3q.

Adolescent↗

The SNAP-25 gene is associated with cognitive ability: evidence from a family-based study in two independent Dutch cohorts.

The synaptosomal-associated protein of 25 kDa (SNAP-25) gene plays an integral role in synaptic transmission, and is differentially expressed in the mammalian brain in the neocortex, hippocampus, anterior thalamic nuclei, substantia nigra and cerebellar granular cells. Recent studies have suggested a possible involvement of SNAP-25 in learning and memory, both of which are key components of human intelligence. In addition, the SNAP-25 gene lies in a linkage area implicated previously in human intelligence. In two independent family-based Dutch samples of 391 (mean age 12.4 years) and 276 (mean age 37.3 years) subjects, respectively, we genotyped 12 single-nucleotide polymorphisms (SNPs) in the SNAP-25 gene on 20p12-20p11.2. From all individuals, standardized intelligence measures were available. Using a family-based association test, a strong association was found between three SNPs in the SNAP-25 gene and intelligence, two of which showed association in both independent samples. The strongest, replicated association was found between SNP rs363050 and performance IQ (PIQ), where the A allele was associated with an increase of 2.84 PIQ points (P=0.0002). Variance in this SNP accounts for 3.4% of the phenotypic variance in PIQ.

Adolescent↗

PINK-1 and DJ-1--new genes for autosomal recessive Parkinson's disease.

Our genetic knowledge of Parkinson's disease (PD) is moving forward at an impressive speed. In less then 10 years family-based linkage analysis and positional cloning have led to the identification of several genes for familial forms of PD, which has been of critical importance to the scientific advance of PD research as the causal genes have offered new tools to model and understand pathways leading to neurodegeneration in PD.

Genes, Recessive↗

Association between the CHRM2 gene and intelligence in a sample of 304 Dutch families.

The CHRM2 gene is thought to be involved in neuronal excitability, synaptic plasticity and feedback regulation of acetylcholine release and has previously been implicated in higher cognitive processing. In a sample of 667 individuals from 304 families, we genotyped three single-nucleotide polymorphisms (SNPs) in the CHRM2 gene on 7q31-35. From all individuals, standardized intelligence measures were available. Using a test of within-family association, which controls for the possible effects of population stratification, a highly significant association was found between the CHRM2 gene and intelligence. The strongest association was between rs324650 and performance IQ (PIQ), where the T allele was associated with an increase of 4.6 PIQ points. In parallel with a large family-based association, we observed an attenuated - although still significant - population-based association, illustrating that population stratification may decrease our chances of detecting allele-trait associations. Such a mechanism has been predicted earlier, and this article is one of the first to empirically show that family-based association methods are not only needed to guard against false positives, but are also invaluable in guarding against false negatives.

Adolescent↗

Genetic analysis of psychiatric disorders in humans.

Psychiatric disorders place a large burden not only on affected individuals and their families but also on societies and health services. Current treatment is only effective in a proportion of the patients, so considerable effort has been put into the development of new medications. The susceptibility to all major psychiatric disorders is, at least in part, genetic. Knowledge of the genes that underlie this susceptibility may lead to the identification of new drug targets and the development of more effective treatments. Therefore, numerous genetic studies in search for the genes involved in psychiatric disorders have been performed. Although results of both linkage and association studies have been inconsistent, several promising gene regions and candidate genes have been identified recently. In this article, we will review the strategies that proved to be successful in detecting genes for psychiatric disorders and we will provide some recommendations to increase the probability of detecting susceptibility genes in genetic studies of different designs.

Genetic Determinism↗

A novel susceptibility locus for Hirschsprung's disease maps to 4q31.3-q32.3.

We report on a multigenerational family with isolated Hirschsprung's disease (HSCR). Five patients were affected by either short segment or long segment HSCR. The family consists of two main branches: one with four patients (three siblings and one maternal uncle) and one with one patient. Analysis of the RET gene, the major gene involved in HSCR susceptibility, revealed neither linkage nor mutations. A genome wide linkage analysis was performed, revealing suggestive linkage to a region on 4q31-q32 with a maximum parametric multipoint LOD score of 2.7. Furthermore, non-parametric linkage (NPL) analysis of the genome wide scan data revealed a NPL score of 2.54 (p = 0.003) for the same region on chromosome 4q (D4S413-D4S3351). The minimum linkage interval spans a region of 11.7 cM (12.2 Mb). No genes within this chromosomal interval have previously been implicated in HSCR. Considering the low penetrance of disease in this family, the 4q locus may be necessary but not sufficient to cause HSCR in the absence of modifying loci elsewhere in the genome. Our results suggest the existence of a new susceptibility locus for HSCR at 4q31.3-q32.3.

Chromosome Mapping↗

Novel mutations in three families confirm a major role of COL4A1 in hereditary porencephaly.

BACKGROUND: Porencephaly (cystic cavities of the brain) is caused by perinatal vascular accidents from various causes. Several familial cases have been described and autosomal dominant inheritance linked to chromosome 13q has been suggested. COL4A1 is an essential component in basal membrane stability. Mouse mutants bearing an in-frame deletion of exon 40 of Col4a1 either die from haemorrhage in the perinatal period or have porencephaly in survivors. A report of inherited mutations in COL4A1 in two families has shown that familial porencephaly may have the same cause in humans. OBJECTIVE: To describe three novel COL4A1 mutations. RESULTS: The three mutations occurred in three unrelated Dutch families. There were two missense mutations of glycine residues predicted to result in abnormal collagen IV assembly, and one mutation predicted to abolish the traditional COL4A1 start codon. The last mutation was also present in an asymptomatic obligate carrier with white matter abnormalities on brain magnetic resonance imaging. CONCLUSIONS: This observation confirms COL4A1 as a major locus for genetic predisposition to perinatal cerebral haemorrhage and porencephaly and suggests variable expression of COL4A1 mutations.

Adult↗

Hereditary Pick's disease with the G272V tau mutation shows predominant three-repeat tau pathology.

Frontotemporal dementia and parkinsonism linked to chromosome 17 have been associated with mutations in the microtubule associated protein tau (MAPT or tau) gene. This disorder is characterized by a large spectrum of neuronal and glial tau lesions in different brain regions. Pick bodies were found in a family with hereditary Pick's disease with the G272V mutation and in several families with other tau mutations in exons 9 and 11-13. The biochemical composition of Pick bodies varies between these mutations. Until recently, no detailed biochemical characterization of G272V brain material was done owing to unavailability of fresh frozen brain material. We now report a detailed study using the immunohistochemistry, western blots and electron microscopy of two brains with the G272V mutation that recently became available. Both brains showed severe neuronal loss in the temporal cortex, whereas in the frontal cortex the loss was less; and abundant Pick bodies in the dentate gyrus of the hippocampus, and caudate nucleus. The Pick bodies consisted exclusively of three-repeat (3R) isoforms, as was demonstrated by isoform-specific antibodies and supported by western blot analysis of sarkosyl-insoluble tau. These observations confirm that this family diagnosed with hereditary Pick disease meets all the criteria for this condition, including the presence of Pick bodies that are unphosphorylated at Ser262 and contain twisted filaments with long periodicity consisting only of 3R tau.

Blotting, Western↗

Brachydactyly and short stature in a kindred with early-onset parkinsonism.

In a Dutch kindred we have identified a deletion of the DJ-1 gene, leading to autosomal-recessive parkinsonism. The parkinsonism patients also had short stature and brachydactyly. In the family and a control group from the same community, we used the DJ-1 deletion as a marker for the originally linked PARK7 region and found a significant association with body height (P = 0.005), which suggests a gene in linkage disequilibrium with DJ-1 to be implicated in short stature. Analysis of hand-bone length showed incomplete segregation of the PARK7 region with brachydactyly, such that a gene in PARK7 is unlikely to fully explain the brachydactyly. Since the bone length reduction was more pronounced in the homozygous parkinsonism patients than in their heterozygous relatives, however, the PARK7 region may contain a modifier gene for growth.

Age of Onset↗

Suggestive evidence for linkage to chromosome 13qter for autosomal dominant type 1 porencephaly.

A large three-generation family with autosomal dominant type 1 porencephaly from southern Italy was studied. A high rate of miscarriages was observed. Of the nine affected individuals, four displayed a severe phenotype, and five had slight pyramidal signs or mild cognitive abnormalities. The MRI study disclosed unilateral porencephalic cyst, or colpocephaly. A genome-wide screen resulted in suggestive evidence for linkage to chromosome 13qter with a maximum logarithm-of-the-odds score of 3.16, from multipoint analysis, with marker D13S285.

Adolescent↗

Familial clustering and genetic risk for dementia in a genetically isolated Dutch population.

Despite advances in elucidating the genetic epidemiology of Alzheimer's disease and frontotemporal dementia, the aetiology for most patients with dementia remains unclear. We examined the genetic epidemiology of dementia in a recent genetically isolated Dutch population founded around 1750. The series of 191 patients ascertained comprised 122 probable Alzheimer's disease patients with late onset and 17 with early onset, and 22 with possible Alzheimer's disease. It further included 10 patients with vascular dementia, nine with Lewy body dementia and six with frontotemporal dementia. All patients, except those with vascular dementia, were more closely related than healthy individuals from the same area. Clustering was strongest for patients with early-onset Alzheimer's disease or Lewy body dementia. Although 14% of late-onset Alzheimer's disease patients had evidence of autosomal dominant disease, consanguinity was found in three late-onset Alzheimer's disease patients, suggesting a recessive or polygenic model underlying the trait. We found no clustering of vascular dementia, implying a difference in genetic risk for late-onset Alzheimer's disease and vascular dementia. Mutations in known genes could not explain the occurrence of dementia, but the population attributable proportion of apolipoprotein E gene (APOE*4) was high (45%) due to a high frequency of APOE*4 carriers. Earlier identified regions on chromosomes 10 and 12, nor the effect of the alpha-2-macroglobulin (A2M) I/D polymorphism on Alzheimer's disease could be confirmed in our study. We did find evidence for association between the A2M D-allele and Lewy body dementia. Our data showed a strong familial clustering of various forms of dementia in this isolated Dutch population. A high percentage of late-onset Alzheimer's disease could be explained by APOE*4, but 55% of its origin is still unknown.

Age of Onset↗

[Progressive supranuclear palsy; an unusual form of parkinsonism].

Progressive supranuclear palsy is a neurodegenerative disorder accompanied by parkinsonism, disturbances of eye movements, pseudobulbar palsy and often cognitive decline. Onset of disease is usually between 50-70 years of age and mean survival is 5-8 years. The prevalence of PSP has been estimated at around 5 per 100,000, although exact figures for the population of the Netherlands are not yet available. International consensus criteria differentiate between possible, probable and definite PSP; the latter requiring neuropathological confirmation. An extensive differential diagnosis may be made early in the course of the disease, but at a later stage development of the characteristic symptoms will make diagnosis easier. Imaging techniques can lend support to the clinical diagnosis to a limited extent, although they lack sufficient specificity to confirm it. PSP is a 'tauopathy' characterized by aggregates of abnormal tau protein in the basal ganglia and brainstem. Some mutations in the tau gene can cause a clinical and pathological picture similar to that of PSP, although most patients with sporadic and familial PSP do not have tau mutations. Various studies have found a strong association between PSP and a specific tau haplotype (H1 haplotype), but its role in the pathophysiological mechanism of PSP is still unclear and needs further research.

Age Factors↗

DJ-1 (PARK7) mutations are less frequent than Parkin (PARK2) mutations in early-onset Parkinson disease.

BACKGROUND: Mutations in the Parkin gene (PARK2) are the most commonly identified cause of recessively inherited early-onset Parkinson disease (EOPD) but account for only a portion of cases. DJ-1 (PARK7) was recently reported as a second gene associated with recessively inherited PD with a homozygous exon deletion and a homozygous point mutation in two families. METHODS: To investigate the frequency of DJ-1 mutations, the authors performed mutational analysis of all six coding exons of DJ-1 in 100 EOPD patients. For the detection of exon rearrangements, the authors developed a quantitative duplex PCR assay. Denaturing high performance liquid chromatography analysis was used to screen for point mutations and small deletions. Further, Parkin analysis was performed as previously described. RESULTS: The authors identified two carriers of single heterozygous loss-of-function DJ-1 mutations, including a heterozygous deletion of exons 5 to 7 and an 11-base pair deletion, removing the invariant donor splice site in intron 5. Interestingly, both DJ-1 mutations identified in this study were found in the heterozygous state only. The authors also detected a polymorphism (R98Q) in 1.5% of the chromosomes in both the patient and control group. In the same patient sample, 17 cases were detected with mutations in the Parkin gene. CONCLUSIONS: Mutations in DJ-1 are less frequent than mutations in Parkin in EOPD patients but should be considered as a possible cause of EOPD. The effect of single heterozygous mutations in DJ-1 on the nigrostriatal system, as described for heterozygous changes in Parkin and PARK6, remains to be elucidated.

Adolescent↗

Unraveling the pathogenesis of Parkinson's disease--the contribution of monogenic forms.

The field of Parkinson's disease pathogenesis is rapidly evolving from the one of a monolithic and obscure entity into the one of a complex scenario with several known molecular players. The ongoing systematic exploration of the genome holds great promise for the identification of the genetic factors conferring susceptibility to the common non-Mendelian forms of this disease. However, most of the progress of the last 5 years has come from the successful mapping and cloning of genes responsible for rare Mendelian variants of Parkinson's disease. These discoveries are providing tremendous help in understanding the molecular mechanisms of this devastating disease. Here we review the genetics of the monogenic forms of Parkinson's disease. Moreover, we focus on the mechanisms of disease caused by alpha-synuclein and parkin mutations, and the implications of this growing body of knowledge for understanding the pathogenesis of the common forms of the disease.

Humans↗

Screening for DJ-1 mutations in early onset autosomal recessive parkinsonism.

The DJ-1 gene was identified as responsible for early onset autosomal recessive parkinsonism in two families (PARK7). In this study, after excluding mutations in the parkin gene, the authors screened a large series of early onset autosomal recessive parkinsonism families and consanguineous isolated patients of diverse geographic origins for DJ-1 mutations. No mutations were found. This indicates that PARK7 is not a common locus for early onset autosomal recessive parkinsonism, and that one or more new loci remains to be identified.

Adolescent↗

Familial multiple epiphyseal dysplasia due to a matrilin-3 mutation: further delineation of the phenotype including 40 years follow-up.

In this study, we followed-up the family with bilateral hereditary micro-epiphyseal dysplasia (BHMED) originally described by Elsbach [1959: J Bone Joint Surg [Br] 41-B:514-523]. Clinical re-examination of all available family members resulted in further delineation of the clinical and radiological phenotype, which is distinct from common multiple epiphyseal dysplasia (MED). Linkage analysis excluded EDM1, EDM2, and EDM3 as candidate genes. Linkage and mutation analysis of matrilin-3 (MATN-3) revealed a new pathogenic mutation confirming that BHMED is indeed a distinct disease entity among MED and MED-like disorders.

Adolescent↗

A clinical-genetic study of Parkinson's disease in a genetically isolated community.

The role of genetic factors in idiopathic, late-onset Parkinson's disease (PD) remains unclear, in spite of the recent advances in the genetics of early-onset forms of familial parkinsonism. There is increasing interest in using genetically isolated populations to unravel the genetics of complex diseases such as late-onset PD. We have studied genetic and clinical features of 109 patients with parkinsonism from an area comprising a genetically isolated population in the South-West of the Netherlands. Of the 109 patients with ascertained parkinsonism, 41 patients were diagnosed with PD and could be linked to a common founder 14 generations ago. The distribution of ages at onset of PD in the genetically isolated population was significantly bimodal, showing two peaks (one with a mean at age 67 years and another with a mean at 44 years, the former peak being significantly larger than that in a population-based study, the Rotterdam Study). In other clinical features, the only statistically significant difference between early-onset and late-onset PD was a decreased motor and cognitive function in patients with late-onset PD. Involvement of other PD genes including DJ-1, a gene implicated in a kindred with early-onset parkinsonism from the same genetic isolate, was excluded in other PD patients in the population. The finding of a common ancestor in 41 idiopathic-PD patients along with the exclusion of known PD genes and loci suggests the presence of at least one other, yet unknown, susceptibility gene involved in PD in this population.

Adult↗