Lipoprotein (a) and anticardiolipin antibodies as risk factors for vascular disease in rheumatoid arthritis.
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Biomedical subjects
Publications and source records attributed to S Bertolini.
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During a survey of the mutations of the low density lipoprotein receptor (LDL-R) gene in Italian patients with familial hypercholesterolemia (FH), we identified a novel point mutation, that creates a new EcoRI site at the 5' end of exon 7, in a heterozygous FH subject (FH-100). The sequence of a cDNA fragment encompassing exon 7 showed the presence of a G-->T transversion in codon 297; this created a new EcoRI site and produced a missense mutation, leading to a Cys297-->Phe substitution in repeat A of the epidermal growth factor (EGF) precursor homology domain of LDL-R. Since the substitution of Cys297 disrupts the intracellular transport of the LDL-R protein, as previously demonstrated by site-directed mutagenesis, we suggest that this mutation is the cause of FH in the FH-100 proband. We screened the DNA of 303 Italian FH patients by amplification of exon 7 from genomic DNA followed by digestion with EcoRI or by Southern blotting. Two individuals (FH-64 and FH-127) were found to be carriers of the Cys297-->Phe mutation. Restriction fragment length polymorphism analysis demonstrated that, in two kindreds (FH-64 and FH-100), the haplotype in linkage with the Cys297-->Phe mutation was the same, suggesting the presence of a common ancestor. The Cys297-->Phe mutation has been designated FHTrieste after the name of the city in Northern Italy from which probands FH-100 and FH-127 originate.
The contribution of a 3' glucokinase gene polymorphism to the aetiology of type 2 diabetes mellitus was studied in 17 diabetic pedigrees from North-Western Italy; linkage methodology was used. A CA repeat sequence was employed as a marker and amplified by PCR. Three alleles were found: Z (195 bp), Z + 4 (199 bp) and Z + 10 (205 bp). Since in diabetic families linkage analysis gave values of LOD score between -0.000438 and 0.026, the association between GK polymorphism and type 2 diabetes could not be either excluded or accepted. Based on these data, we conclude that glucokinase polymorphism is not a major determinant of type 2 diabetes mellitus, at least in our population, but, consistent with LOD score obtained, in some pedigrees it could assume a minor role in the aetiology of this disease.
BACKGROUND AND PURPOSE: Although epidemiologic investigations are trying to clarify the role of plasma lipid concentrations (primarily cholesterol and its subfractions) as risk factors for both ischemic and hemorrhagic stroke, little information is available regarding the effect of sustained hypercholesterolemia on cerebral perfusion. METHODS: Regional cerebral blood flow (CBF) was measured by the 133Xe inhalation method in 25 heterozygous patients (four untreated) affected with familial hypercholesterolemia. In 15 patients regional CBF was repeated 20 minutes after intravenous administration of acetazolamide (10 mg/kg body wt) to evaluate cerebrovascular reactivity. Correlations among cerebral perfusion data, present or pretreatment plasma lipid concentrations, and certain other clinical features were assessed by ANOVA. RESULTS: Both basal regional CBF and cerebrovascular reactivity were normal in the vast majority of patients compared with age- and sex-matched normal control subjects. CBF was significantly dependent on pretreatment low-density lipoprotein cholesterol (LDL-C) concentration (P = .005) and the presence of symptomatic ischemic heart disease (P = .015). CBF was only slightly dependent on age (P = .05) and was not dependent on either lipoprotein(a) or present LDL-C concentration. CBF did not differ between treated and untreated patients, and the perfusional increase induced by acetazolamide was not related to any other variable. CONCLUSIONS: Cerebral perfusion and cerebrovascular reactivity were maintained within the normal range despite long-lasting, severe hypercholesterolemia, even if a somewhat lower CBF was found in those patients with the highest LDL-C pretreatment levels. These results are in accord with the epidemiologic data that implicate hypercholesterolemia as a minor risk factor, if a risk factor at all, for intracranial atherosclerosis and ischemic stroke.
A novel mutation of low density lipoprotein (LDL)-receptor gene was found in an Italian family hypercholesterolemia (FH) patient during a screening of 300 FH patients. The proband as well as her daughter were found to be heterozygotes for the mutation. Binding, internalization, and degradation of 125I-labeled LDL by the proband's fibroblasts were reduced to approximately 50% compared to values found in control cells. DNA analysis by Southern blotting showed that the mutant allele was characterized by an insertion of about 10 kb, which resulted from a duplication of exons 9-14 of the LDL-receptor gene. In addition, Northern blot analysis of the proband's RNA showed, besides the normal sized LDL-receptor mRNA (5.3 kb), an additional mRNA of about 6.2 kb. The junction between exon 14 and the duplicated exon 9 was amplified by polymerase chain reaction (PCR) from the cDNA. The sequence of the amplified fragment showed that exon 14 joined the duplicated exon 9 without changing the reading frame. The derived amino acid sequence indicated that the mutated receptor protein had a partial duplication of the EGF precursor homology domain. Ligand and immunoblotting revealed that proband's fibroblasts contained one-half of the normal amount of LDL-receptor protein (molecular mass 130 kDa) and an abnormally large receptor of approximately 160 kDa. The amount of this abnormal receptor as detected by two monoclonal antibodies (10A2 and 4B3) was found to be approximately 30% that of the normal LDL-receptor present in the same cells.(ABSTRACT TRUNCATED AT 250 WORDS)
Prenatal diagnosis for familial hypercholesterolaemia (FH) was performed by using restriction fragment length polymorphisms (RFLPs) of the LDL receptor gene on chorionic villi DNA taken during the 10th week of pregnancy. Both parents were FH heterozygotes and had previously had a healthy son and an FH homozygous son. Two RFLPs were informative in this family and revealed that the fetus was unaffected by FH. At birth the child was found to have an LDL cholesterol level of 30 mg/dl and a normal LDL receptor activity in cultured umbilical cord fibroblasts. RFLP analysis on chorionic villi DNA is highly recommended for all heterozygous FH couples in whom the LDL receptor gene mutation/s is/are still to be characterized.
An analysis of LDL-receptor gene was performed on an Italian patient with heterozygous familial hypercholesterolemia. Restriction enzyme analysis showed that the proband was heterozygous for a deletion of 4.5 kb spanning the 5' end of exon 13 (45 nucleotide residues) to intron 15. Amplification of genomic DNA, using polymerase chain reaction (PCR), followed by direct sequencing, showed that this deletion was identical to the one reported by Lehrman et al. (1986. Proc. Natl. Acad. Sci. 83: 3679-3683). As only the normal LDL-receptor mRNA was detectable in proband fibroblasts by Northern blot, we used reverse transcription-PCR to amplify the mutant mRNA using primers complementary to exon 6 (sense) and exon 18 (antisense). The amplification of control cDNA resulted in a single fragment of 1725 nucleotides containing the normal sequence. The amplification of cDNA from the proband produced the 1725-nucleotide fragment (as in the control) and three additional fragments (F1, F2, and F3) of smaller size. The direct sequence showed that in the F1 fragment exon 12 was joined to exon 16; in the F2 fragment exon 12 was joined to exon 17; and in the F3 fragment exon 11 was joined to exon 16. Thus, the deletion-bearing allele generated three mRNAs, two of which resulted from alternative splicings leading to the skipping of exons 16 and 12, respectively. It is expected that the translation of these mutant mRNAs will generate three aberrant proteins, the synthesis of which should be negligible in view of the very low content of the corresponding mRNAs.
The usefulness of the RFLPs of the LDL-receptor gene in early diagnosis of Familial Hypercholesterolemia (FH) was investigated in 122 FH-families. Four RFLPs, produced by digestion with the enzymes PvuII, ApaLI and AvaII/XbaI were able to detect the affected gene and to follow the inheritance of the disease in 72 out of 97 families (74%). In the remaining 25 families, unambiguous diagnosis was possible in 66% of the cases by use of PvuII, ApaLI and BstEII/EcoRI RFLPs. The RFLPs were also useful to distinguish true homozygotes from compound heterozygotes and to detect families where recombination events occurred or where hypercholesterolemia was not due to a defect of the LDL-receptor gene. In a normal population PvuII RFLP account for 9.6% of the total variance of the LDL cholesterol levels adjusted for confounding variables. The P2 allele was associated with lower LDL cholesterol concentrations (average excess -9.1 mg/dl). This finding allows us to presume there is a DNA sequence, close to the variable PvuII cutting site in intron 15, which could act as an enhancer of the LDL-receptor gene expression.
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Aim of the study was to assess the activity of dihydroergocristine (DHEC, CAS 17479-19-5) in aged patients with impaired cognitive function. Twenty-five university hospital centres and 250 physicians participated in the study. 2,600 patients (1,104 males and 1,496 females, age range 50-80 years) were admitted to the study. Each patient was administered 6 mg/d DHEC for 120 days. Clinical evaluation was made through the SCAG Rating Scale registered at basal time, after 60 and 120 days. Responsivity to treatment was considered high when the final score was reduced by 30% and none if less than 10%. Analysis of results demonstrated that at the end of the study responsivity was high in 73% of cases, moderate in 20.4% and absent in 6.5%. Tolerability was very good as side effects were reported only in 3.16% of patients. Most frequent side effects were: nausea (1.23%), gastralgia (1.11%), headache (0.29%), hypotension (0.12%), vertigo (0.12%) and rash (0.08%). Drop-outs for gastralgia were reported only in 0.53% of the patients.
In the LDL-receptor gene, a large rearrangement causing hypercholesterolemia was detected in three apparently unrelated families living in northern Italy. In all probands, binding, internalization, and degradation of 125I-LDL measured in skin fibroblasts were found to be 40%-50% of control values, indicative of heterozygous familial hypercholesterolemia (FH). Southern blot analysis revealed that the probands were heterozygous for a large (25-kb) deletion of the LDL-receptor gene eliminating exons 2-12. The affected subjects possessed two LDL-receptor mRNA species: one of normal size (5.3 kb) and one of smaller size (3.5 kb). In the latter mRNA, the coding sequence of exon 1 is joined to the coding sequence of exon 13, causing a change in the reading frame and thereby giving rise to a premature stop codon. The receptor protein deduced from the sequence of the defective mRNA is a short polypeptide of 29 amino acids, devoid of any function. Tracing these three families back to the 17th century, we found both their common ancestor and the possible origin of the mutation, in a region which is called "Lomellina" and which is located in southwest Lombardy, near the old city of Pavia. Therefore we named the mutation "FH-Pavia."
During a survey of Italian patients with familial hypercholesterolemia (FH), we identified an FH heterozygous patient with a gross rearrangement of the low density lipoprotein (LDL) receptor gene. Southern blot analysis of the proband's DNA digested with restriction enzymes PvuII, BamHI, BglII and XbaI and hybridization with cDNA probes complementary to the 3' end of the gene revealed the presence of abnormal fragments that were approximately 7 kb larger than their normal counterparts. DNA digestion with other enzymes (EcoRV, NcoI, KpnI and StuI) and hybridization with probes complementary to exons 13-17 generated normal fragments and an abnormal fragment of 6.3-6.8 kb. These results are consistent with the presence of an insertion of approximately 7 kb caused by a duplication of exons 13, 14 and 15. This is a novel mutation that is most probably the result of an unequal crossing-over between repetitive sequences located in intron 12 and intron 15. This novel mutation has been designated FHBologna 2.
Familial hypercholesterolemia (FH) is an autosomal dominant metabolic disorder caused by several different mutations in the low density lipoprotein (LDL) receptor gene. This large number of different mutations, often undetectable in Southern blotting, makes it impossible directly to diagnose the disease. However, restriction fragment length polymorphisms (RFLPs) can be used to follow the inheritance of the defective gene in FH families. In the present study, we report the use of three RFLPs, detected by PvuII, ApaLI and AvaII restriction enzymes, to determine the haplotypes of normal and defective LDL receptor genes in 61 families with FH and in 128 normal individuals. Two of the nine haplotypes were significantly more often associated with the affected genes, whereas one was significantly less frequent. Although none of the associations was strong enough to allow diagnosis in individuals, it was possible, using the three RFLPs, to identify the haplotype of the affected gene in 57 families and to carry out unequivocal diagnosis in 67% of the cases. In four families, PvuII and AvaII detected an abnormal fragment co-segregating with the disease, thus increasing the percentage of diagnosis to 73.4% of the cases.
The effect of oral gestrinone, 2.5 mg twice weekly for 6 months, was studied in 11 women with mild or moderate endometriosis laparoscopically confirmed. The mean laparoscopic score decreased from 17.18 to 9.09 (P greater than 0.005). Painful symptoms were relieved in all patients within 2 months from start of therapy. Gonadotropins, prolactin (PRL) 17 beta-estradiol (17 beta-E2), estrone (E1), progesterone (P), androstenedione (A), and dehydroepiandrosterone sulfate (DHEA-S) remained in the follicular phase range. Total testosterone (TT) and sex hormone-binding globulin (SHBG) decreased, whereas free testosterone (FT) slightly increased. Metabolic studies showed a decrease of total triglycerides, very low-density lipoprotein (VLDL) triglycerides, and high-density lipoprotein (HDL) and VLDL cholesterol, parallel to the decrease of associated apoproteins. Low-density lipoprotein cholesterol and apoprotein B increased during therapy. The results suggest that gestrinone possesses antiestrogenic, androgenic, and progestigenic effects at therapeutic dosages both by acting on central and peripheral steroid receptors. For its efficacy and good tolerance, gestrinone may be considered an option for treating endometriosis.
Sodium vanadate activates "in vitro" insulin receptor autophosphorylation and protein tyrosine kinase in a dose-dependent manner. Insulin receptor protein tyrosine kinase is directly activated also by the anti-insulin receptor beta subunit monoclonal antibody 18-44. We previously demonstrated that the anti-insulin receptor monoclonal antibody MA-10 decreases insulin-stimulated receptor protein tyrosine kinase activity "in vitro", without inhibiting insulin receptor binding. In this report we show that insulin receptor protein tyrosine kinase, activated by sodium vanadate or by monoclonal antibody 18-44, is inhibited by MA-10 antibody. These data suggest that insulin receptor protein tyrosine kinase activity can be either activated and inhibited through mechanisms different from insulin binding.
The safety and efficacy of a single daily dose of fenofibrate (200 mg) have been evaluated in 12 Type IIB hyperlipidaemic patients in a three-month study. At the same time the pharmacokinetics was studied to check whether this new dosage schedule would give a therapeutic plasma levels of fenofibrate. At the single daily dose of 200 mg, fenofibrate was highly effective, very well tolerated, and it reached therapeutic plasma levels without accumulation. It appears that fenofibrate can usefully be employed at this dosage in hyperlipidaemia, especially since patient compliance is better when only one daily dose need be taken.
The possible estrogenic effects of tamoxifen on plasma lipids and antithrombin III levels were investigated in 91 breast cancer patients. Mean values of total, HDL and LDL cholesterol, triglycerides, glucose, uric acid, and antithrombin III were evaluated in 55 patients on adjuvant tamoxifen for at least 3 months and compared with those found in 36 patients on no therapy. Total cholesterol, LDL cholesterol, and antithrombin III levels were significantly lower in treated patients (p less than 0.05). Our results support the hypothesis of a partial agonist action of this antiestrogen, although general clinical practice suggests that tamoxifen-related thrombotic events are rare.
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