Paracoccidioidomycosis masquerading as Crohn's disease.
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Biomedical subjects
Publications and source records attributed to P P Costa.
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beta 2-Microglobulin (beta 2-M), which accumulates in the plasma of patients undergoing long-term dialysis, has been identified as the principal precursor protein of amyloid fibrils in dialysis-related amyloidosis. As no specific treatment for this affection has been yet established, an extracorporeal immunoadsorption procedure appears to be an attractive therapeutic approach to remove beta 2-M. Several murine monoclonal antibodies to human beta 2-M were developed and compared as affinity ligands. One of them was selected on the basis of its specificity and adsorption capacity. In order to achieve maximum efficiency in protein removal, different parameters of the procedure were studied and optimized: effect of antibody coupling density, determination of maximum adsorption capacity of the immunoadsorbents and influence of antigen concentration and of flow-rate on antigen capture efficiency. The conditions of regeneration of immunoaffinity sorbents were also investigated to allow their multiple use without loss of adsorption capacity. The results show the validity of the proposed technique in removing beta-M from plasma of patients with chronic renal failure.
The first Swedish case of familial amyloidotic polyneuropathy (FAP) was published in 1965. The same transthyretin (TTR met30) mutation as that seen in Japanese, Portuguese, and other populations was also found in Swedish FAP patients. More than 350 patients with clinical manifestations of FAP have been diagnosed in northern Sweden, most of them originating from the areas around Skellefteå and Piteå. The mean age of onset is 56 years, much later than in patients from Japan and Portugal. To estimate the frequency of the TTR met30 mutation in the counties of Västerbotten and Norrbotten, sera from 1276 persons aged 24 to 65 years, randomly sampled from a health programme (MONICA), were screened with the monoclonal antibody FD6. In 19 persons, 13 females and six males, a positive reaction was seen in an Elisa test using this antibody. DNA analysis confirmed the TTR met30 mutation and showed that 18 were heterozygous and one homozygous for this mutation. Other mutations were not looked for in this study. The mean TTR met30 carrier frequency in the area was 1.5% ranging from 0.0 to 8.3% in 23 subpopulations. There was a notable discrepancy between the regional distribution of the TTR met30 allele and the morbidity rate for FAP. The estimated number of TTR met30 gene carriers in a total population of 500,000 in the area is approximately 7500. The penetrance of the TTR met30 mutation shows considerable variation between families, and the overall diagnostic (predictive) value in this population is as low as around 2%.
The first liver transplantation carried out in Spain for the treatment of type I familial amyloidotic polyneuropathy (FAP I) is presented. The reason for the operation was based on the liver being responsible for the synthesis of abnormal transtirretin (TTR) constituting the peculiar amyloid of the disease. Following transplantation a rapid and noticeable decrease in abnormal TTR was observed and the evolution of the clinical picture after 18 months of surgery is favorable with progressive improvement of the neurologic symptoms and normal function of the graft. These encouraging results coincide with those of the Swedish group of Umea, the pioneer of this procedure.
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Familial amyloidotic polyneuropathy (FAP) is an autosomal dominant hereditary type of lethal amyloidosis involving single (or double) amino acid substitutions in the amyloidogenic protein transthyretin (TTR). The most common type of FAP (Type I, or Portuguese) is characterized by a Val-->Met substitution at position 30. The Met30 variant of TTR has been produced by recombinant methods, crystallized in a form isomorphous with native TTR, subjected to X-ray analysis and compared structurally with the wild-type protein. The comparison shows that the effect of the substitution at position 30 is transmitted through the protein core to Cys10, the only thiol group in the TTR subunit, which becomes slightly more exposed. The variant TTR molecule is otherwise in a near-native state. Use of computer graphics has shown that it is possible to model a linear aggregate of TTR molecules, each linked to the next by a pair of disulphide bonds involving Cys10 residues. Formation of these disulphide bonds involves a small number of slightly short molecular contacts with native TTR molecules, most of which are relieved in the Met30 variant. We propose this model as a possible basis for a molecular description of the FAP amyloid fibrils.
An anti-transthyretin (TTR) mouse monoclonal antibody (88.6.FD6) of IgG1 subclass, obtained using as immunogen TTR from the serum of a patient with familial amyloidotic polyneuropathy, was found to bind to sera from carriers of several amyloidogenic TTR variants associated with peripheral neuropathy, but not to normal sera or sera from carriers of non-pathogenic or cardiomyopathic variants, in an ELISA performed under special conditions. Further characterization suggests that it recognizes an epitope near the N-terminal side of the TTR monomer. We propose that this epitope is exposed in amyloid and could be implicated in fibril deposition in the peripheral nervous system.
Recently, a transthyretin variant, TTR Met 119, in which methionine substitutes for threonine 119, a component of the protein's iodothyronine binding site, was identified in individuals with transient euthyroid hyperthyroxinemia. Healthy carriers of Met 119 have normal serum thyroid hormone concentrations, but two studies of Met 119 carriers have differed as to whether T4 binding to TTR is increased. An additional kindred has been identified by hybrid isoelectric focusing in an ongoing screening program for TTR variants in the Portuguese population with TTR Met 30 associated familial amyloidotic polyneuropathy. Cyanogen bromide peptide mapping and DNA restriction length polymorphism analyses showed that the propositus was a compound heterozygote for two TTR variants: Asn 90 and Met 119. Family analysis revealed that he inherited the TTR Met 119 variant from the mother and the TTR Asn 90 variant from the father. Neither the compound heterozygote nor his parents had symptoms of familial amyloidotic polyneuropathy. Serum dialysis with stepwise saturation of iodothyronine binding sites confirmed that TTR binding of T4 is increased in TTR Met 119. The increased binding is due to a higher TTR concentration rather than an increased association constant for T4. Because of the small proportion of serum T4 bound by TTR, increased T4 binding by TTR did not affect the ratio of free to bound T4 or T4 concentrations. In contrast, plasma retinol binding protein, almost all of which is bound by TTR, was elevated. The Asn 90 mutation does not affect either the concentration or the hormone binding characteristics of the protein. Possible long-term effects of these mutations and the combined heterozygotic state remain to be determined.
We report the biochemical and molecular characterization of two new transthyretin (TTR) variants in two Italian families with hereditary amyloidosis. Both families presented neuropathy and cardiomyopathy but they differ in other clinical features. These TTR variants were previously detected by isoelectric focusing (IEF); one is a neutral TTR variant and the other one is basic. By protein and DNA analysis the neutral variant was found to have a substitution of an alanine for a threonine residue at position 49 (TTR Ala-49) of the polypeptide chain. The basic variant has a glutamine residue replacing glutamate at position 89 (TTR Gln-89).
PURPOSE: In familial amyloid cardiomyopathy of Danish origin, the amyloid microfibrils contain a mutant transthyretin (TTR) with a methionine-for-leucine substitution at the molecular position 111. We studied the possible occurrence of this variant TTR-Met111 in serum from afflicted as well as nonafflicted family members and their offspring, in order to define its possible role as predictor of the disease and to describe its mode of inheritance. PATIENTS AND METHODS: Stored, frozen serum samples obtained from 1959 through 1960 from 36 of 40 living members of the kindred were analyzed. The method employed to detect the abnormal TTR was based on the electrophoretic separation of fragments produced by cyanogen bromide cleavage at the two methionine sites. RESULTS: All sera from family members with amyloid cardiomyopathy contained the variant transthyretin TTR-Met111 as did sera from half of their offspring. In contrast, nonafflicted family members and their offspring were seronegative for TTR-Met111. Three cousins from the second generation died between 1980 and 1986 of amyloid cardiomyopathy. The presence of variant TTR-Met111 preceded their deaths by 20 to 26 years. CONCLUSIONS: The occurrence in serum of the mutant transthyretin TTR-Met111 is linked to the occurrence of amyloid cardiomyopathy in patients and their offspring, while unafflicted branches of the family are negative for the variant protein. That the occurrence in serum of TTR-Met111 precedes the onset of clinical amyloid cardiomyopathy by several decades makes the variant TTR a marker for the disease. The distribution of afflicted family members and seropositivity for the variant TTR shows an autosomal dominant mode of inheritance. CLINICAL SIGNIFICANCE: The results make possible early detection of potential patients and provide tools for genetic counseling. Cardiac transplantation may provide a new therapeutic option.
Recently, a new transthyretin (TTR) variant was described in the normal Portuguese and German populations. The same substitution was found associated with familial amyloidotic polyneuropathy (FAP) in an American family of Italian origin. Comparative isoelectric focusing studies showed a difference in the mobility pattern between the non-pathogenic and pathogenic variants. However, comparative DNA sequencing between them did not reveal any additional mutation. Comparative isoelectric focusing between the variants and TTR Asn 90 produced by recombinant techniques indicated that the non-pathogenic variant has the electrophoretic behaviour expected for the mutation. We suggest that an as yet unknown post-translational modification may have occurred in the FAP-associated Asn 90 variant, turning it into an amyloidogenic molecule.
Familial amyloidotic polyneuropathy is characterized by the presence in patients plasma of a genetic variant of transthyretin. No specific treatment has been found and extracorporeal immunoadsorption on immobilized anti-transthyretin antibodies appears as a potentially attractive procedure. Parameters involved in specific immunoadsorption of transthyretin were studied and optimized. Several monoclonal anti-TTR antibodies were compared as affinity ligands and one of them was found to be suitable for such purposes. Optimum quantities of antibodies to be immobilized on the gel were determined. Three desorption agents were tested for regenerating immunoadsorbents and best results were obtained with basic variation of pH, allowing total desorption of TTR and possibility of multiple use without loss of adsorption capacity. Simulation of an immunoadsorption procedure in well-defined conditions showed efficiency and specificity of adsorption to remove TTR and the system thus should be subjected to clinical trials.
In transthyretin (TTR) a new mutation (TTR-Thr45) has been identified in a patient with familial amyloidosis characterized clinically by prominent cardiomyopathy and the absence of peripheral neuropathy. Comparative peptide mapping by high-performance liquid chromatography of the patient's plasma TTR together with normal TTR showed the presence of an abnormal tryptic peptide in the patient's TTR. The sequence of this peptide (peptide 6, residues 36-48) demonstrated the presence of a threonine-for-alanine substitution at position 45. This change can be explained by a single base change of adenine for guanine in the Ala-45 codon and was demonstrated directly by DNA sequence analysis of PCR-amplified exon 2 of the TTR gene; allele-specific oligonucleotide hybridization both in the patient and in fixed heart tissue from his aunt confirmed the base change. The TTR-Thr45 mutation is a new variant TTR found associated with cardiomyopathy.
A basic transthyretin (TTR) variant, apparently non-pathogenic, has been reported in a German family. Protein analysis of this TTR variant revealed the substitution of arginine for proline at position 102 of the TTR polypeptide chain. This result was confirmed by DNA analysis of PCR amplified DNA.
Transthyretin (TTR) is a plasma protein interacting with thyroxine T4 and retinol binding protein (RBP). Several variants of TTR with single amino acid substitutions have been identified as the major components of the amyloid fibrils of familial amyloidotic polyneuropathy (FAP), a fetal, autosomal dominant genetic disease. The elucidation of the molecular nature of the variants distinct from that of the wild-type TTR is crucial for understanding the amyloidogenesis in FAP, but our understanding is very poor mainly because of the unavailability of pure variant TTRs. In the present study, we used an Escherichia coli OmpA secretion vector (Ghrayeb et al., 1984) and achieved an effective production of the variant TTRs related to FAP including Met-30, Ile-33, Ala-60, Tyr-77, Met-111, and Ile-122 types. The variant TTRs produced in this system were efficiently secreted to the culture media. The chemical analysis showed that the secreted TTR (Met-30 type) has the same N-terminus as the native one. IEF analyses also indicated that the secreted product is properly processed as assessed by its pI. Furthermore, the secreted TTR was shown to have biological activities, namely, the thyroxin binding activity and the ability to associate with retinol binding protein, indicating that the secreted TTR polypeptide is properly folded. The present work also demonstrated that the processing/secretion of the recombinant TTR molecules in E. coli was strongly affected by single amino acid substitutions.
Familial amyloid polyneuropathy (FAP) is a hereditary disease which eventually causes serious ocular problems. Seven eyes from patients with FAP 1 were vitrectomised, and the insoluble proteins from the vitreous were purified, the amyloid protein isolated, and the prealbumin characterised with a monoclonal antibody against amyloid fibril protein. Before surgery, visual acuity was very poor, due to abundant deposits in the vitreous, frequently attached to the posterior lens capsule. The pupil had peculiar indentations and the pupillary reflexes were abnormal. Intraocular pressure (IOP) was at the upper limit of normal. In the ocular fundus an intraretinal perifoveal gray ring was sometimes seen. Vitrectomy improved visual acuity, but the reappearance of vitreous deposits reduced it to 8.8/10 after 33.4 months, when treatment was needed for most of the eyes to control IOP. Amyloid and the mutant form of prealbumin characteristic of FAP 1, TTR Met 30, were shown to be present in the vitreous.