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J T Epplen

Publications and source records attributed to J T Epplen.

At least 73 records · Page 4Linked to original sources

Autonomic nervous system function in Huntington's disease.

OBJECTIVE: To investigate whether Huntington's disease (HD) affects autonomic nervous system (ANS) functioning. METHODS: Twenty patients with HD who had positive genetic test results underwent standardised ANS function tests including sympathetic skin responses (SSRs) of the hands and feet, measurements of heart rate variability (HRV), both during five minutes of resting and deep respiration, and an orthostatic blood pressure test. Patients were classified according to the motor subscale of the unified Huntington's disease rating scale (UHDRS; mean (SD) score 26.4 (13.6)) and divided into two subgroups: UHDRS <25 points (early stages, E-HD) and UHDRS > or =25 points (mid stages, M-HD). Autonomic indices were compared with those obtained for a group of well matched healthy controls (n=60). RESULTS: Overall, patients showed lower HRV indices than controls. Multivariate analysis with the independent factor of "group" (controls, E-HD, M-HD) showed a significant group effect on both the high frequency power (F=4.32, p=0.017) and the coefficient of variation (F=4.23, p=0.018), indicating a significant reduction in vagal modulation in the M-HD group. There was a shift in autonomic neurocardiac balance towards sympathetic predominance in the M-HD group compared with controls (F=2.89, p=0.062). Moreover, we found an inverse correlation between the severity of clinical HD symptoms (assessed by the UHDRS) and the modulation of cardiovagal activity (p=0.028). Vagal dysregulation was present in two patients; one of them also showed a pathological blood pressure test and a latency prolongation in the SSRs of the hands. Two other patients had pathologically reduced SSR amplitudes. Only patients of the M-HD group were affected. CONCLUSION: Autonomic dysfunction is present even in the middle stages of HD and affects both the sympathetic and parasympathetic branch of the ANS.

Adult↗

Evaluation of the gamma-synuclein gene in German Parkinson's disease patients.

Mutations in the alpha-synuclein gene are responsible for an autosomal-dominantly inherited form of Parkinson's disease (PD) and alpha-synuclein was found to be the major component of Lewy bodies in PD. Because of the high homology to alpha-synuclein and the abundance in neuronal tissues, we investigated the gamma-synuclein gene in PD. We analyzed 262 German PD patients and 179 healthy German controls via two polymorphisms in the gamma-synuclein gene. No significant differences in the allelic or genotypic distributions of the investigated polymorphisms were observed between patients and controls. In addition no evidence for an increased risk of combined genotypes of polymorphisms in the gamma-synuclein and the alpha-synuclein gene was found. Therefore, our results do not support a major role of the gamma-synuclein gene in PD.

Aged↗

Functional characterization of the human Huntington's disease gene promoter.

The genetic basis of neurodegeneration in Huntington's disease (HD) has been identified as a (CAG)(>37) repeat expansion in a gene of unknown function. Interestingly, patients with the same expanded (CAG)(n) repeat length may have markedly different ages at onset. Based on experiences in animal models the level of expression might be one of the modifying factors. To gain insight into the regulation of the human HD gene we functionally analyzed 2266 bp of the HD gene promoter region. This region lacks a TATA and a CAAT box, is GCrich, and it has several consensus sequences for SP1, AP-2 and AP-4 binding sites. The stretch between nucleotides -49 and -198 relative to the first ATG is highly conserved between human and rodents and it harbors several potential binding sites for transcription factors. We analyzed deletion mutants fused with the chloramphenicol acetyltransferase (CAT) reporter gene in transfected, huntingtin expressing neuronal (NS20Y) and non-neuronal (CHO) cell lines. Partial deletion of the evolutionarily conserved part of the promoter significantly reduces the activity in both neuronal and non-neuronal cells indicating that the core promoter activity is located between nucleotides -221 and 4, relative to the +1 translation start site. Binding affinities of DNA-protein interactions were defined by electrophoretic mobility shift assays and the protected nucleotide positions were determined by DNase I footprinting.

Age of Onset↗

ApoE polymorphisms in narcolepsy.

BACKGROUND: Narcolepsy is a common neuropsychiatric disorder characterized by increased daytime sleepiness, cataplexy and hypnagogic hallucinations. Deficiency of the hypocretin neurotransmitter system was shown to be involved in the pathogenesis of narcolepsy in animals and men. There are several hints that neurodegeneration of hypocretin producing neurons in the hypothalamus is the pathological correlate of narcolepsy. The ApoE4 allele is a major contributing factor to early-onset neuronal degeneration in Alzheimer disease and other neurodegenerative diseases as well. METHODS: To clarify whether the ApoE4 phenotype predisposes to narcolepsy or associates with an earlier disease onset, we have genotyped the ApoE gene in 103 patients with narcolepsy and 101 healthy controls. RESULTS: The frequency of the E4 allele of the ApoE gene was 11% in the patient and 15% in the control groups. Furthermore, the mean age of onset did not differ between the ApoE4+ and ApoE4- patient groups. CONCLUSION: Our results exclude the ApoE4 allele as a major risk factor for narcolepsy.

Journal Article↗

Disorders of peroxisome biogenesis due to mutations in PEX1: phenotypes and PEX1 protein levels.

Zellweger syndrome (ZS), neonatal adrenoleukodystrophy (NALD), and infantile Refsum disease (IRD) are clinically overlapping syndromes, collectively called "peroxisome biogenesis disorders" (PBDs), with clinical features being most severe in ZS and least pronounced in IRD. Inheritance of these disorders is autosomal recessive. The peroxisome biogenesis disorders are genetically heterogeneous, having at least 12 different complementation groups (CGs). The gene affected in CG1 is PEX1. Approximately 65% of the patients with PBD harbor mutations in PEX1. In the present study, we used SSCP analysis to evaluate a series of patients belonging to CG1 for mutations in PEX1 and studied phenotype-genotype correlations. A complete lack of PEX1 protein was found to be associated with severe ZS; however, residual amounts of PEX1 protein were found in patients with the milder phenotypes, NALD and IRD. The majority of these latter patients carried at least one copy of the common G843D allele. When patient fibroblasts harboring this allele were grown at 30 degrees C, a two- to threefold increase in PEX1 protein levels was observed, associated with a recovery of peroxisomal function. This suggests that the G843D missense mutation results in a misfolded protein, which is more stable at lower temperatures. We conclude that the search for the factors and/or mechanisms that determine the stability of mutant PEX1 protein by high-throughput procedures will be a first step in the development of therapeutic strategies for patients with mild PBDs.

ATPases Associated with Diverse Cellular Activitie↗

A complex containing at least one zinc dependent HeLa nuclear protein binds to the intronic (gaa)(n) block of the frataxin gene.

We analyzed HeLa nuclear proteins binding to the (gaa)(n) harbouring intron 1 of nine frataxin alleles and characterized the structures of the repeats. Fragments with blocks longer than (gaa)(9) form spontaneously different intramolecular H-y topoisomeres in linear state. The observed triplexes depend on the length of the repeat. Interruption of the perfectly repeated (gaa)(n) block entails two structural regions. At least two HeLa nuclear proteins bind to the (gaa)(n) fragments resulting in a distinct major retarded complex as revealed by EMSA. One of these proteins is zinc dependent. Importantly, the fragment harbouring (gan)(121) binds additional proteins. Protein binding appears to be locus specific, and the binding affinity was found to be not random. The affinities of the different target fragments varied by a factor of four. Binding affinities of the fragments were not obviously correlated to differences in the composition of the repeats. DNase I footprinting revealed only weakly protected binding regions, but multiple HS sites in the repeat regions of the fragments. These findings and the fact, that DNA conformers observed in EMSA and electron microscopical experiments bind proteins, lead to the assumption that the proteins recognize, both, B-DNA and triple helical structures, but with different affinity. Possible functions of the proteins are discussed in the context of transformation of triple helical structures into B-DNA and the pathogenesis of FRDA.

Alleles↗

Familial parkinsonism with synuclein pathology: clinical and PET studies of A30P mutation carriers.

BACKGROUND: The authors identified the second known mutation in the alpha-synuclein(SNCA) gene, an alanine-to-proline exchange in amino acid position 30 (A30P), that cosegregates with the disease in one German family with autosomal dominantly inherited parkinsonism (ADP). The authors studied carriers of the A30P mutation to compare the phenotype of this mutation with idiopathic PD (IPD) and to assess nigrostriatal dopaminergic function in symptomatic and preclinical mutation carriers. METHODS: The pedigree of the A30P family spans five generations with five affected individuals. The authors performed detailed neurologic examinations followed by mutation analysis in 11 living individuals. In three mutation carriers, two individuals with definite PD and one person at risk for PD, they used L-[18]F-fluoro-3,4-dihydroxyphenylalanine (F-DOPA), [11]C-raclopride (RAC), and [18]F-fluorodeoxyglucose (FDG) PET to investigate presynaptic dopaminergic function, dopamine D2 receptors, and cerebral energy metabolism. The authors studied the cognitive functions of carriers of the A30P mutation using neuropsychological screening. RESULTS: PET studies revealed striatal presynaptic dopaminergic alterations consistent with sporadic IPD in two affected family members and no evidence for nigrostriatal dopaminergic dysfunction in one presymptomatic mutation carrier. Neuropsychological testing in four mutation carriers provided evidence for cognitive impairment as a frequent and early symptom of the A30P mutation; this is also supported by regional cerebral energy metabolism alterations in the clinically presymptomatic subject. CONCLUSIONS: The phenotype of the A30P mutation in the SNCA gene is similar to that of sporadic IPD, including a high variability of the age at disease onset, ranging from 54 to 76 years. The follow-up of presymptomatic carriers of the A30P mutation may give insight into preclinical disease stages and early manifestations of PD.

Aged↗

A prepro-orexin gene polymorphism is associated with narcolepsy.

The orexin (hypocretin) neurotransmitter system was recently shown to be directly involved in the pathogenesis of narcolepsy in two animal models. Furthermore, decreased levels of orexin A in the CSF were shown in narcoleptic patients. To define any genetic contribution of orexin to the etiology of narcolepsy, the authors screened the entire prepro-orexin gene for mutations or polymorphisms in 133 patients suffering from narcolepsy. They report an association of a rare polymorphism in the prepro-orexin gene with narcolepsy in a cohort of 178 patients.

DNA Primers↗

Isolated loss of gamma-sarcoglycan: diagnostic implications in autosomal recessive limb-girdle muscular dystrophies.

Mutations in the sarcoglycan (SG) genes cause a subset of limb-girdle muscular dystrophies (LGMD). We report a Spanish patient with progressive LGMD exhibiting an almost isolated loss of gamma-SG and a homozygous Delta521-T mutation in the gamma-SG gene. These results suggest that isolated loss of gamma-SG might remain undetected using only the alpha-SG antibody in routine muscle biopsy studies. Both alpha- and gamma-SG antibodies should be used in the diagnostic detection of patients with LGMD.

Adult↗

Alpha-sarcoglycanopathy previously misdiagnosed as Duchenne muscular dystrophy: implications for current diagnostics and patient care.

Differential diagnosis of limb-girdle muscular dystrophy, including alpha-sarcoglycanopathy and Duchenne muscular dystrophy, is impossible to acheive on clinical grounds alone; therefore immunohistology, Western blotting and molecular genetic analysis are manadatory for a correct diagnosis. The patient's genotype with a hitherto unknown mutation (Tyr134STOP) in exon 5 adds to the growing spectrum of mutations in the alpha-sarcoglycan gene.

Adolescent↗

[Lip-jaw-palate clefts. Heterogenous disease pictures].

BACKGROUND: Orofacial clefts are congenital structural deficits involving the lip with or without the palate. The genetic origins of orofacial clefts have been considered as heterogeneous for a long time. Non-syndromatic clefts are based on complex traits. DISCUSSION: The different approaches towards the genetics of this multifactorial disease are discussed and the consequences for genetic counselling for patients, persons at risk and their relatives are reflected upon.

Adult↗

Interleukin-4 and interleukin-4 receptor gene polymorphisms in inflammatory bowel diseases.

Imbalances in the regulation of Th1 and Th2 lymphocytes are crucial in inflammatory bowel diseases. Interleukin-4 is secreted by Th2 lymphocytes and downregulates cytokine production from Th1 lymphocytes. Functionally relevant polymorphisms have been described in the interleukin-4 and the interleukin-4 receptor alpha genes. Association of inflammatory bowel diseases with these polymorphisms has been reported recently suggesting high transcription and enhanced signalling activity in Crohn's disease. Our study, comprising 211 patients with Crohn's disease, 147 patients with ulcerative colitis and 446 healthy controls revealed significant association of Crohn's disease with the -590 T allele of the interleukin-4 gene (P = 0.03). This allele entails reduced expression of IL-4. The reason for these contrasting findings may be discussed in the context of a putatively predisposing allele in linkage disequilibrium with the alleles of the interleukin-4 gene.

Alleles↗

Novel SNPs in the CD18 gene validate the association with MPO-ANCA+ vasculitis.

Wegener granulomatosis (WG), microscopic polyangiitis (MP), and Churg-Strauss syndrome (CSS) are characterized by the presence of anti-neutrophil cytoplasmic antibodies (ANCA). Anti-myeloperoxidase (MPO)-ANCA are a typical feature of MP and CSS, while anti-proteinase 3 (PRTN3)-ANCA are highly specific for WG. Several reports indicate that ANCA may directly contribute to pathological processes, ie, through an increase of adhesivity between polymorphonuclear (PMN) and endothelial cells (EC). PMN interact and endothelium interact via the adhesion cascade (AC). CD18 is a key molecule of the AC, as CD18 defects abrogate the adhesion of PMN and cause leukocyte adhesion deficiency, an immunodeficient trait. We have screened the entire coding and regulatory regions of the CD18 gene. Ten single nucleotide polymorphisms (SNP) were identified, four of them showing significant associations with MPO-ANCA(+) vasculitis. One of these SNP's was localized in an alternate transcription initiation site. This polymorphism may influence CD18 gene expression, resulting in dose-dependent increase in adhesion and consecutively facilitated degranulation and respiratory burst. In this manner the pro-adherent genotype may predispose to MPO-ANCA(+) vasculitis.

Antibodies, Antineutrophil Cytoplasmic↗

The polymorphism at position -174 of the IL-6 gene is not associated with inflammatory bowel disease.

OBJECTIVE: Inflammatory bowel diseases (IBD) are multifactorial disorders, characterized by failure to limit the inflammatory response to luminal antigens. Genetic factors play an important role in the pathogenesis, but little is known about the accountable genes. Increased secretion of pro-inflammatory cytokines appears crucial in the initiation of the inflammatory response. METHODS: To evaluate the role of the IL-6 gene in IBD, a functionally relevant polymorphism in the promoter region (G/C at position -174) has been genotyped in 169 patients with Crohn's disease (CD), 133 patients with ulcerative colitis (UC) and 440 healthy controls by using restriction fragment length polymorphism (RFLP) analysis. RESULTS: No significant differences were apparent in the allele, genotype and carrier frequencies between patients and controls. CONCLUSION: High secretion of IL-6 does not seem to play a major role in the genetic predisposition to IBD.

Alleles↗

Genetic analysis of the alpha2-macroglobulin gene in early- and late-onset Parkinson's disease.

Recent association studies investigating polymorphisms in the alpha2-macroglobulin (A2M) gene provided evidence for an involvement of this protease inhibitor in the pathogenesis of Alzheimer's disease (AD). The partially overlapping pathology between AD and Parkinson's disease (PD) led us to investigate the role of A2M in PD. We performed association studies in a large sample of 328 German PD patients and 322 closely matched healthy controls. Analyzing the Val1000Ile polymorphism and a pentanucleotide deletion in the 5' splice site of exon 18 of the A2M gene we found an excess of homozygosity for the A2M deletion in early-onset PD (EOPD) patients (age at onset < 50 years) compared to late-onset PD (LOPD) patients (age at onset > 50 years; p = 0.008, p(p)c = 0.064, chi2 = 7.017). Therefore our data might indicate an age at onset modulating effect of the homozygous A2M deletion in PD.

Age of Onset↗

Mutation analysis and association studies of the UCHL1 gene in German Parkinson's disease patients.

Recently, an Ile93Met substitution has been identified in the ubiquitin carboxy-terminal hydrolase L1 (UCHL1) gene in a single German PD family with autosomal dominant inheritance. To determine whether mutations in the UCHL1 gene are causative for Parkinson's disease (PD) a detailed mutation analysis was performed in a large sample of German sporadic and familial PD patients. We found no disease-causing mutation in the coding region of the UCHL1 gene. Direct sequencing revealed six intronic polymorphisms in the UCHL1 gene. Analysis of an S18Y polymorphism in exon 3 of the UCHL1 gene in sporadic PD patients and controls showed carriers of allele 2 (tyrosine) significantly less frequent in patients with a reduced risk of 0.57 (CI = 0.36-0.88; p = 0.012, p(c) = 0.047, chi2 = 6.31). Our study shows that sequence variations in the coding region of UCHL1 are a rare event. A protective effect of a certain UCHL1 variant in the pathogenesis of sporadic PD is suggested, underlining the relevance of UCHL1 in neurodegeneration.

Aged↗