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Biomedical subjects

E J Santos

Publications and source records attributed to E J Santos.

8 recordsLinked to original sources

On GATAGATA and other "junk" in the barren stretch of genomic desert.

(GATA)n and additional simple repeated DNA sequences have long been known but functional analyses along traditional research strategies have not yielded definitive results. Therefore these elements are commonly regarded as genomic "junk" although they represent assets for innovative methodological approaches and especially for speculations. While extensively using microsatellites for genome mapping and genetic relationship analyses, it was also realized that certain simple repeats can cause human trinucleotide block expansion diseases. Hence these simple repeat elements comprise an exceptional range of biological meaning, i.e. from genetically absolutely neutral markers for genome analysis, behavioral and population genetic studies to dominant and invariably disease causing mutations with complete penetrance. The quest into why there is so much repetitive junk in recent genomes can be answered only in part and sequentially, but sometimes--even after substantial efforts--not for the given element.

Animals↗

Genetic predisposition to multiple sclerosis as revealed by immunoprinting.

This study was designed to examine the immunogenetic background predisposing to multiple sclerosis (MS). Three hundred fifty-eight clinically well-characterized MS patients from Germany were investigated and compared to 395 healthy control subjects. Each individual was genotyped for 22 polymorphic markers located within or close to immunorelevant candidate genes including HLA-DRB1*, T-cell receptor (TCR), cell interaction molecules, cytokines, and cytokine receptor genes. Altogether, approximately 17,000 genetic analyses were performed. Patients were grouped according to the course of MS-relapsing-remitting or chronic progressive. Most of the genetic markers were not associated with increased risk or their exact contribution was not clear (e.g., tumor necrosis factor). The relative risks for HLA-DRB1*15+ and DRB1*03+ individuals were 3.64 and 1.42, respectively. In both groups of patients, certain TCRB gene polymorphisms were risk factors. In DRB1*03+ individuals the relative risk was increased (> 22) when a specific TCRBV6S3 allele was also inherited. Furthermore, distinct linkage disequilibria of TCRBV6S1/TCRBV6S3 elements in patients and control subjects strongly suggested an additional risk factor in the TCRBV region for DRB1*15+ individuals. These findings are discussed with respect to the pathogenesis and rational approaches to the therapy of MS.

Adolescent↗

On simple repetitive DNA sequences and complex diseases.

Simple repetitive DNA sequences are abundantly interspersed in eukaryote genomes and therefore useful in genome research and genetic fingerprinting in plants, fungi and animals, including man. Recently, simple repeats were also identified in some prokaryotic genomes. Hence the same probes can be applied for multilocus DNA fingerprinting in medically relevant bacteria. Simple repeats including composite dinucleotide microsatellites are differentially represented in different compartments of eukaryote genomes. Expanded triplet blocks in and around certain genes may, for example, cause so-called trinucleotide diseases in man. As a consequence, simple repetitive sequences should also be characterized with respect to their influences on the DNA structure, gene expression, genomic (in)stability and their development on an evolutionary time scale. Here three examples of microsatellites in the human major histocompatibility complex (HLA) are investigated, a (GT)n microsatellite situated 2 kb 5' off the lymphotoxin alpha (LTA) gene, a (GAA)n block in the 5' part of the HLA-F gene and a composite (GT)n(GA)m stretch in the second intron of HLA-DRBl genes. Grossly differing mutation rates are evident in these elements as well as varying linkage disequilibria. The unfolding of these simple repeats in distant human populations is covered including Caucasians, Bushmen and South American Indians. Furthermore, implications of simple repeat neighboring genes are discussed for the multifactorial diseases multiple sclerosis (MS), rheumatoid arthritis (RA) and early onset pauciarticular arthritis (EOPA). Polymorphisms of HLA-DRBl and T cell receptor beta variable (TCRBV) genes confer susceptibility for these autoimmune diseases as demonstrable by intronic simple repeat variability. Microsatellite polymorphisms within the TNF region reveal linkage disequilibria with HLA-DRBl and different promotor alleles of the TNFA gene. Disease associations with TNFA microsatellite alleles are, on the one hand, secondary to associations with HLA-DRBl genes (in MS) or they represent additional risk factors (in RA, EOPA) on the other hand. Evolutionary persistence, various structural conformations and the specific binding of nuclear proteins to several simple repeat sequences refute the preconceptions of biological insignificance for all of these ubiquitously interspersed elements.

Arthritis↗

Coding versus intron variability: extremely polymorphic HLA-DRB1 exons are flanked by specific composite microsatellites, even in distant populations.

Although microsatellite typing is the dominant method in genome research and indirect gene diagnosis, precise relationships of exonic and adjacent simple repeat polymorphisms are not known. We investigated exon 2 sequences of HLA-DRB1 genes and their neighbouring (GT)n(GA)m repeats including the intervening single copy spacer. DRB1 is the most polymorphic protein-coding locus in man and all vertebrates investigated. The entire DRB1 variability exists in exon 2. DRB1 genes in different haplotype groups (DR1, DR51, DR52, DR8 and DR53) are accompanied by characteristic modifications of the (GT)n(GA)m block (3' to group-specific single copy spacers). Among more than 520 alleles analysed, > 100 different types of microsatellites were observed. The perfect (GT)n and (GA)m blocks vary in length and may be partly 'degenerated', mostly in a subgroup-specific manner. Interestingly, the extent of microsatellite diversity varies in given DRB1 alleles. While the microsatellites of the DR7, DR9 alleles and in the DR1 group are virtually invariant, in DR4 and DR13, in particular, simple repeats appear hypervariable with at least 15 or 17 different length alleles, respectively. Comparing Caucasians, Bushmen and South American Indians, the microsatellite variation in identical DRB1 alleles (e.g. DRB1*0102, 03011, 1302) is smaller than within any of the DR groups in Caucasians. Taken together, extremely polymorphic DRB1 exons evolve in concert with certain variants of an exceptionally well-preserved microsatellite.

Cloning, Molecular↗

Differential stability of the (GAA)n tract in the Friedreich ataxia (STM7) gene.

Friedreich ataxia (FA) is an autosomal recessive, neurodegenerative disorder characterized by polypurine trinucleotide expansion. The (GAA)n motif is located in intron 18 of the STM7 gene (previously considered as intron 1 of the X25 gene) on chromosome 9q13. We studied the distribution profile of the polymorphic (GAA)n repetitive tract in 178 healthy individuals. The number of repeats of the trinucleotide block ranged from 7 to 29. In three individuals there were more than 29 repetitions of the GAA motif. While two of the individuals would be diagnosed as carriers of the FA mutation (GAA size > 90), the status of the third person, with a (GAA)58 tract, appears less clear at present. Thus an FA carrier rate of 1/60 to 1/90 can be assumed for the German population. In addition an intermediate-sized allele, (GAA)38 was identified in a mother with two affected children. The (GAA)38 allele appears to be expanded during transmission to at least (GAA)66 and (GAA) > 400 in her two FA-affected offspring. Therefore the shortest known STM7 allele conferring FA is (GAA)66. These novel facts have to be considered for differential diagnosis and definition of the FA carrier state.

Adult↗

New protein genetic studies in six Amazonian Indian populations.

A total of 732 individuals affiliated with six Amazonian Indian populations were variously studied in relation to 26 protein genetic systems. Eleven of them were found to be monomorphic in these groups, in accordance with previous investigations. Similarities and dissimilarities (the latter involving the Rh, Duffy, haptoglobin and transferrin systems) were observed in relation to earlier investigations in four of these populations (Galibi, Palikour, Mundurucu and Tenharim). A dimeric, cathodal variant of albumin was found among two Galibi subjects, and the fairly common occurrence of CP* ACAY among some South American Indian populations was confirmed. The results in the six populations were compared with those from 29 others. When relationships are searched for among tribes of the same linguistic group, the factor that seems to be most influential is geographical localization, an exception being the pattern observed among the Cayapo subgroups. The latter shows genetic differences of the same level of magnitude as those observed among Ge-speaking tribes.

Alleles↗

Extensive gene flow in human populations as revealed by protein and microsatellite DNA markers.

Population genetic studies are mainly based on the description of genetic variability and on interpopulational comparisons using genetic distance measures. The evolutionary dynamics of the populations are inferred from these parameters and accurate estimates of gene flow may be critical. The present study reevaluates the role of gene flow in human populations by different statistical methods from a number of microsatellite and protein polymorphism data. The estimated number of individuals exchanged per generation (Nm) was greater than 1 in all data sets with all statistical methods. The correlation between geographic and genetic distances suggests a pattern of isolation by distance, characteristic of demographic and genetic equilibrium conditions among populations worldwide. Thus the high values of Nm may be interpreted as a reflection of high gene flow between geographically close populations. As expected, gene flow appears to exert a pivotal role in the genetic history of humans.

Gene Frequency↗

Prevention of nonspecific reactions on reversed passive latex agglutination assay (RPLA) for detecting low amounts of staphylococcal enterotoxins.

The SET-RPLA, from Denka Seiken Co. Ltd., Tokio, a commercial reversed passive latex agglutination test kit, has been recommended to establish the enterotoxicity capacity of some staphylococcal strains, implicated in food poisoning outbreaks that produce low levels of enterotoxins (SE). Despite the RPLA specificity, the occurrence of nonspecific reactions when testing low-SE-producing is common. In order to control these nonspecific reactions the addition of purified normal rabbit IgG purified was applied on approximately 350 staphylococcal isolates from human milk and anatomic sites of healthy dental student carriers. The results indicated that addition of 5% (v/v) of purified normal rabbit IgG (0.74 mg/mL) to the culture supernatant fluid is a simple and reliable tool for the controlling of nonspecific reactions in the RPLA assay.

Adult↗