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V Meiner

Publications and source records attributed to V Meiner.

32 records · Page 2Linked to original sources

Cerebrotendinous xanthomatosis.

Cerebrotendinous xanthomatosis is an autosomal recessive lipid-storage disease caused by mutations in the sterol 27-hydroxylase (CYP27) gene. Recent cloning and characterization of CYP27 enables further analysis and understanding of the pathophysiology of this multisystem disease. Molecular diagnosis provides means for the identification of heterozygotes and pre-symptomatic detection of affected individuals.

Animals↗

Cerebrotendinous xanthomatosis: molecular diagnosis enables presymptomatic detection of a treatable disease.

We report an early molecular diagnosis of cerebrotendinous xanthomatosis (CTX) in a Jewish Moroccan family with two affected siblings. The proband displayed characteristic manifestations of the disease, whereas a younger brother, homozygous for the mutant allele, was asymptomatic. Clinical studies in the younger patient disclosed mild cognitive impairment, peripheral neuropathy, and abnormal EEG. Elevated plasma cholestanol levels were evident in both affected patients, with documented normal levels in the molecularly diagnosed heterozygous family members. Molecular characterization of affected CTX families provides early diagnosis and treatment of homozygotes in the presymptomatic state as well as identification of heterozygotes, which is crucial for genetic counseling and for prenatal diagnosis.

Action Potentials↗

Cerebrotendinous xanthomatosis in the Israeli Druze: molecular genetics and phenotypic characteristics.

Cerebrotendinous xanthomatosis (CTX) is an autosomal recessive lipid-storage disease caused by mutations in the sterol 27 hydroxylase gene (CYP27). Clinically, a multitude of neurological, skeletal, and vascular manifestations are usually present. Premature atherosclerosis has been reported in CTX and may be related to the metabolic derangement caused by the deficiency of the enzyme. A CYP27 nonsense mutation created by the deletion of cytosine376 has been identified in four Israeli Druze CTX patients residing in the same village. Molecular screening for this mutation in families of two probands revealed a total of 10 homozygotes and 28 heterozygotes whose clinical and biochemical characteristics are described. Overall, except for tendon xanthomas, most of the clinical manifestations progress with age. The CYP27 mutation was associated with modest differences in the levels of plasma total cholesterol (TC) and LDL cholesterol (LDL-C). The distribution of plasma concentrations of TC and LDL-C in the CTX families was consistent with a polygenic model. A similar model that includes also the effects of the CYP27 genotypes was not better supported by the data. It may be concluded that, in CTX, the presence of a CYP27 mutation does not significantly affect the plasma concentrations of lipids and lipoproteins. Therefore, the reported increased prevalence of atherosclerosis in this disease must be related to other factors.

Adolescent↗

Molecular genetics of cerebrotendinous xanthomatosis in Jews of north African origin.

Cerebrotendinous xanthomatosis (CTX) is an autosomal recessive sterol storage disease characterized by the accumulation of a bile alcohol, cholestanol, in diverse tissues. The disorder is manifested by extensive nervous system involvement, juvenile cataracts, tendon xanthomas, and premature atherosclerosis and is caused by sterol 27-hydroxylase (EC 1.14.13.15) mutations. Recently, two mutations were shown to cause CTX in four Jewish families of Moroccan origin. An additional mutant allele, found in a Jewish family of Algerian origin is characterized here. Sequence analysis revealed a C to T transition at cDNA position 1037 which predicted a threonine to methionine substitution at residue 306 (designated T306M). It is highly suggestive, but not definitive, that this transition is the mutation causing CTX in this family. A search for additional cases from Jewish families of North African extraction identified five new families including 10 cases. The three sterol 27-hydroxylase gene mutations account for all 10 CTX families and their presence may suggest the existence of positive selective forces that lead to an increased prevalence of this relatively rare disease in Jews from North Africa.

Africa, Northern↗

A missense mutation in the low density lipoprotein receptor gene causes familial hypercholesterolemia in Sephardic Jews.

Familial hypercholesterolemia (FH) is an autosomal dominant disease caused by mutations in the low density lipoprotein (LDL) receptor gene. Here, we characterize an LDL receptor mutation that is associated with a distinct haplotype and that causes FH in the Jewish Sephardic population originating from Safed, a town in northern Israel. The mutation was found in eight FH families originating from this community comprising 10% of heterozygote FH index cases screened in Israel. The mutation was not found in four additional FH heterozygotes whose hypercholesterolemia co-segregated with an identical LDL receptor gene haplotype. A guanine to cytosine substitution results in a missense mutation (asp147 to his) in the fourth repeat of the binding domain encoded by exon 4 of the LDL receptor gene. The mutant receptor protein was synthesized in cultured cells as a 120 kDa precursor form that failed to undergo normal processing to a mature cell surface form. Most of the receptor precursors were degraded in the endoplasmic reticulum. The small number of mutant receptors on the cell surface were unable to bind LDL or beta very low density lipoprotein. The abnormal behavior of the mutant receptor was reproduced by site-directed mutagenesis and expression of the mutant protein in CHO cells. The mutation can be diagnosed by allele-specific oligonucleotide hybridization of polymerase chain reaction amplified DNA from FH patients.

Animals↗

Efficacy and safety of high dose fluvastatin in patients with familial hypercholesterolaemia.

The efficacy and safety of the HMG CoA reductase inhibitor fluvastatin have been evaluated in a double blind study in 52 patients with familial hypercholesterolaemia. A standard AHA Phase II lipid lowering diet was prescribed throughout the study. After 6 weeks of a single blind dosage stabilisation period, in which patients received fluvastatin 40 mg qPM, patients were randomly allocated to one of two double blind treatment groups: group A (n = 24) received fluvastatin 20 mg b.d. for 12 weeks and fluvastatin 20 mg AM + 40 mg PM for an additional 12 weeks; Group B (n = 28) received fluvastatin 40 mg qPM during the entire study. Safety and tolerability were evaluated by the analysis of biochemical and haematological parameters, and ophthalmological and physical examinations. Efficacy was analysed by the determination of plasma lipids, lipoproteins and apoproteins. Fluvastatin 40 mg/d was associated with up to a 27.4% decrease in LDL-C and a 9.6% increase in HDL-C concentrations. Increasing the dose of fluvastatin from 20 mg b.d. to 60 mg per day in Group A was associated with a 7.1% decrease in LDL-C, a 12.1% increase of HDL-C and a 12.8% decrease in the LDL-C/HDL-C ratio. In comparison with Group B (40 mg qPM) LDL-C, HDL-C and the LDL-C/HDL-C ratio in Group A (60 mg) differed by -8.9%, 6.6% and -12%, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Frameshift and splice-junction mutations in the sterol 27-hydroxylase gene cause cerebrotendinous xanthomatosis in Jews or Moroccan origin.

The sterol 27-hydroxylase (EC 1.14.13.15) catalyzes steps in the oxidation of sterol intermediates that form bile acids. Mutations in this gene give rise to the autosomal recessive disease cerebrotendinous xanthomatosis (CTX). CTX is characterized by tendon xanthomas, cataracts, a multitude of neurological manifestations, and premature atherosclerosis. A relatively high prevalence of the disease has been noted in Jews originating from Morocco. The major objectives of the present investigation were to determine the gene structure and characterize the common mutant alleles that cause CTX in Moroccan Jews. The gene contains nine exons and eight introns and encompasses at least 18.6 kb of DNA. The putative promoter region is rich in guanidine and cytosine residues and contains potential binding sites for the transcription factor Sp1 and the liver transcription factor, LF-B1. Blotting analysis revealed that the mutant alleles do not produce any detectable sterol 27-hydroxylase mRNA. No major gene rearrangements were found and single-strand conformational polymorphism followed by sequence analysis identified two underlying mutations: deletion of thymidine in exon 4 and a guanosine to adenosine substitution at the 3' splice acceptor site of intron 4 of the gene. The molecular characterization of CTX in Jews of Moroccan origin provides a definitive diagnosis of this treatable disease.

Adult↗

Genetic determinants of responsiveness to the HMG-CoA reductase inhibitor fluvastatin in patients with molecularly defined heterozygous familial hypercholesterolemia.

BACKGROUND: In familial hypercholesterolemia, plasma lipoproteins can be modulated by 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors, although the underlying response mechanisms are still unknown. METHODS AND RESULTS: A single-blind study with fluvastatin, an HMG-CoA reductase inhibitor, was conducted in 64 familial hypercholesterolemia patients who had defined apolipoprotein E (apo E) and apolipoprotein(a) [apo(a)] isoforms. Plasma lipids and lipoproteins were analyzed throughout the study. The patients were grouped according to low density lipoprotein (LDL) receptor genotype. After 4 weeks of treatment with 40 mg of fluvastatin, the mean decrease in plasma LDL cholesterol (LDL-C) in patients with the genetically characterized "Sephardic" and "Lithuanian" mutations was 16-18%, whereas in the other three groups, it was 25-30% (p < 0.005). High density lipoprotein cholesterol (HDL-C) levels increased in all groups. Multivariate analyses suggested that 41% of the LDL-C response can be explained by the LDL receptor mutation, body mass index, apo E3/E4 phenotype, apo(a) isoform LpS2, and baseline LDL-C levels, and 46% of the change in HDL-C is associated with age, sex, body mass index, baseline HDL-C, and the Sephardic mutation. CONCLUSIONS: Fluvastatin exhibits diverse and independent effects on plasma lipoproteins related to several constitutional, genetic, and familial factors. Information regarding these factors may provide better prediction of patients' clinical responses to fluvastatin.

Adult↗

Prenatal diagnosis of familial hypercholesterolemia caused by the "Lebanese" mutation at the low density lipoprotein receptor locus.

Here, we report the prenatal diagnosis of familial hypercholesterolemia in a Christian-Arab family that carries the "Lebanese" mutation, a single base substitution that creates a HinfI restriction site, at the low density lipoprotein (LDL) receptor locus. Polymerase chain reaction amplification and restriction analysis were performed on genomic DNA extracted from a chorionic villus sample. In conjunction with karyotype analysis, the fetus was identified as a heterozygous female. Analysis of LDL receptor restriction fragment length polymorphisms confirmed the presence of a male parent marker and revealed that the fetus inherited the mutant gene from its mother. This technique offers a simple and rapid diagnostic tool that can be carried out at an early stage of gestation. It is recommended for families and population groups with molecularly defined LDL receptor mutations.

Base Sequence↗

A nonsense mutation in the LDL receptor gene leads to familial hypercholesterolemia in the Druze sect.

Familial hypercholesterolemia (FH) is an autosomal dominant disease caused by mutations in the LDL receptor gene. Here we characterize an LDL receptor mutation that is associated with a distinct haplotype and causes FH in the Druze, a small Middle Eastern Islamic sect with a high degree of inbreeding. The mutation was found in FH families from two distinct Druze villages from the Golan Heights (northern Israel). It was not found neither in another Druze FH family residing in a different geographical area nor in eight Arab and four Jewish FH heterozygote index cases whose hypercholesterolemia cosegregates with an identical LDL receptor gene haplotype. The mutation, a single-base substitution, results in a termination codon in exon 4 of the LDL receptor gene that encodes for the fourth repeat of the binding domain of the mature receptor. It can be diagnosed by allele-specific oligonucleotide hybridization of PCR-amplified DNA from FH patients.

Base Sequence↗

A common Lithuanian mutation causing familial hypercholesterolemia in Ashkenazi Jews.

Familial hypercholesterolemia (FH) is an autosomal dominant disease caused by mutations in the low-density-lipoprotein (LDL) receptor. Here we characterize an LDL-receptor founder mutation that is associated with a distinct LDL-receptor haplotype and is responsible for FH in 35% of 71 Jewish-Ashkenazi FH families in Israel. Sixty four percent (16/25) of the Ashkenazi patients who carry this mutant allele were of Lithuanian origin. The mutation was not found in 47 non-Ashkenazi FH families. This mutation was prevalent (8/10 FH cases) in the Jewish community in South Africa, which originated mainly from Lithuania. The mutation, a 3-bp in-frame deletion that would result in the elimination of Gly197, has been previously designated FH-Piscataway. PCR amplification of a DNA fragment that includes the mutation in heterozygous individuals results in the formation of a heteroduplex that can be demonstrated by PAGE and used for molecular diagnosis.

Alleles↗

Tuberculosis and AIDS.

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Acquired Immunodeficiency Syndrome↗

Clinical-biochemical correlation in molecularly characterized patients with Niemann-Pick type C.

PURPOSE: Niemann-Pick disease type C (NP-C) is an autosomal recessive lipid storage disease manifested by an impairment in cellular cholesterol homeostasis. The clinical phenotype of NP-C is extremely variable, ranging from an acute neonatal form to an adult late-onset presentation. To facilitate phenotype-genotype studies, we have analyzed multiple Israeli NP-C families. METHODS: The severity of the disease was assessed by the age at onset, hepatic involvement, neurological deterioration, and cholesterol esterification studies. Screening of the entire NPC1 coding sequence allowed for molecular characterization and identification of disease causing mutations. RESULTS: A total of nine NP-C index cases with mainly neurovisceral involvement were characterized. We demonstrated a possible link between the severity of the clinical phenotype and the cholesterol esterification levels in fibroblast cultures following 24 hours of in vitro cholesterol loading. In addition, we identified eight novel mutations in the NPC1 gene. CONCLUSIONS: Our results further support the clinical and allelic heterogeneity of NP-C and point to possible association between the clinical and the biochemical phenotype in distinct affected Israeli families.

Age of Onset↗