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A Amorim

Publications and source records attributed to A Amorim.

At least 55 records · Page 3Linked to original sources

Prehistoric and historic traces in the mtDNA of Mozambique: insights into the Bantu expansions and the slave trade.

A sample of mitochondrial DNA (mtDNA) from the southeastern African population of Mozambique has been shown to have affinities with populations both to its north and south. From the north came sequences that may have been involved in the Bantu expansion (from western, through eastern, to southern Africa), such as members of haplogroups L3b, L3e1a and a subset of L1a. The dating of the major component of Mozambican mtDNAs, the subset L2a of haplogroup L2, displayed an age range compatible with the Bantu expansion. The southern influence was traced by the presence of sequence types from haplogroup L1d, a probable relict of Khoisan-speaking populations that inhabited the region prior to their displacement by the Bantu-speaking incomers. Within historical times, the forced displacement of Mozambicans as part of the slave trade, mainly documented as being to the Americas, generated a differential input of eastern African sequences into the mtDNA pools of the Americas and of Europe, as testified to by the greater number of sequence matches between Mozambique and the Americas, compared to those between Mozambique and Europe.

DNA, Mitochondrial↗

Phylogeography of the human mitochondrial haplogroup L3e: a snapshot of African prehistory and Atlantic slave trade.

The mtDNA haplogroup L3e, which is identified by the restriction site +2349 MboI within the Afro-Eurasian superhaplogroup L3 (-3592 HpaI), is omnipresent in Africa but virtually absent in Eurasia (except for neighbouring areas with limited genetic exchange). L3e was hitherto poorly characterised in terms of HVS-I motifs, as the ancestral HVS-I type of L3e cannot be distinguished from the putative HVS-I ancestor of the entire L3 (differing from the CRS by a transition at np 16223). An MboI screening at np 2349 of a large number of Brazilian and Caribbean mtDNAs (encompassing numerous mtDNAs of African ancestry), now reveals that L3e is subdivided into four principal clades, each characterised by a single mutation in HVS-I, with additional support coming from HVS-II and partial RFLP analysis. The apparently oldest of these clades (transition at np 16327) occurs mainly in central Africa and was probably carried to southern Africa with the Bantu expansion(s). The most frequent clade (transition at np 16320) testifies to a pronounced expansion event in the mid-Holocene and seems to be prominent in many Bantu groups from all of Africa. In contrast, one clade (transition at np 16264) is essentially restricted to Atlantic western Africa (including Cabo Verde). We propose a tentative L3e phylogeny that is based on 197 HVS-I sequences. We conclude that haplogroup L3e originated in central or eastern Africa about 46,000 (+/-14,000) years ago, and was a hitchhiker of much later dispersal and local expansion events, with the rise of food production and iron smelting. Enforced migration of African slaves to the Americas translocated L3e mitochondria, the descendants of which in Brazil and the Caribbean still reflect their different regional African ancestries.

Africa↗

MUC1 gene polymorphism in the gastric carcinogenesis pathway.

MUC1 like most mucin genes shows extensive length polymorphism in the central core region. In a previous study it was shown that individuals with small MUC1 alleles/genotypes have an increased risk for development of gastric carcinoma. Our aim was to see if MUC1 gene polymorphism was involved in susceptibility for the development of conditions that precede gastric carcinoma: chronic atrophic gastritis (CAG) and intestinal metaplasia (IM). We evaluated MUC1 polymorphism in a population of 174 individuals with chronic gastritis (CG) displaying (CAG) and/or intestinal metaplasia (IM). The population of patients with CG shows MUC1 allele frequencies significantly different from the gastric carcinoma patients and blood donors population. A significantly lower frequency of CAG and IM was observed in MUC1 VNTR heterozygotic patients. Within the group of patients with IM, MUC1 large VNTR homozygotes show a significantly higher frequency of complete IM while small VNTR homozygotes show a significantly higher frequency of incomplete IM. These findings show that MUC1 polymorphism may define different susceptibility backgrounds for the development of conditions that precede gastric carcinoma: chronic atrophic gastritis (CAG) and intestinal metaplasia (IM).

Adult↗

Interleukin 1B and interleukin 1RN polymorphisms are associated with increased risk of gastric carcinoma.

BACKGROUND & AIMS: Interleukin (IL)-1 gene cluster proinflammatory polymorphisms have been associated with development of gastric atrophy and with increased risk of gastric carcinoma. We aimed to determine the association between IL-1 loci polymorphisms and increased risk of gastric carcinoma in samples from a Portuguese population, and to find whether there was any relationship with the histologic types of gastric carcinoma. METHODS: In a case-control study including 220 controls and 152 patients with gastric carcinoma (intestinal, 76; diffuse, 37; and atypical, 39), both the IL-1B-511 biallelic polymorphism and the IL-1RN penta-allelic variable number of tandem repeats were genotyped. RESULTS: We found a significant association between the IL-1 polymorphisms and increased risk for tumor development in patients with intestinal-type gastric carcinoma. A trend towards an increased risk of tumor development was also observed in patients with diffuse-type gastric carcinoma. No significant relationship was observed in patients with atypical carcinoma. Carriers of IL-1B-511T and IL-1RN*2 homozygotes had increased risk for developing intestinal-type gastric carcinoma with odds ratios of 2.7 (95% confidence interval [CI], 1.5-4.9) and 3.1 (95% CI, 1.5-6.5), respectively. Statistical analysis showed an interaction between the 2 loci with the risk conferred by the IL-1B-511T allele substantially increased (odds ratio, 9.0; 95% CI, 3.5-23.0) in individuals homozygous for the IL-1RN*2 allele. CONCLUSIONS: Our results provide further support to the association between IL-1 gene cluster proinflammatory polymorphisms and increased risk of gastric carcinoma. Furthermore, we found evidence pointing to the existence of a synergistic interaction between the IL-1B and IL-1RN polymorphisms.

Adult↗

Influence of the variable number of tandem repeats located in the promoter region of the thiopurine methyltransferase gene on enzymatic activity.

BACKGROUND: The genetic polymorphism of thiopurine methyltransferase (TPMT) activity has a significant relevance in the clinical outcome of patients receiving thiopurine drugs as immunosupressive or anticancer therapies. Apart from several open reading frame mutations unequivocally associated with decreased TPMT activity, a variable number of tandem repeats (VNTR), located within the 5' untranslated region, was recently reported as also affecting gene expression. AIMS AND METHODS: We have characterized both molecularly, by polymerase chain reaction-based techniques, and enzymatically, with an HPLC-based method, a sample of 143 Portuguese Caucasian individuals with the main objective of deepening the study of the TPMT genotype/phenotype relationship. Because two different repeated elements (A and B) do contribute to the overall VNTR variation, we set out to analyze their combined and individual effects on TPMT activity. RESULTS: Allele VNTR*6 was found to be consistently associated with decreased levels of TPMT activity, supporting previous reports that the VNTR does affect levels of TPMT activity, although moderately and in a way not yet clearly defined. Furthermore, individual analysis of the A and B variations suggested that three B repeats was the likely motif influencing gene expression toward decreased transcription. CONCLUSIONS: Our hypothesis, which emphasizes the number of particular motifs within the VNTR internal structure more than the undiscriminated number of repeats as the potential causative factor affecting TPMT activity, needs further support from future studies, namely, from enlarged population samples. However, the knowledge of the VNTR acting mechanism will represent an important step toward fully understanding how the phenotypic variability at the TPMT trait is modulated.

Alleles↗

Population genetics of four PKLR intragenic polymorphisms in Portugal and São Tomé e Príncipe (Gulf of Guinea).

Four intragenic PKLR polymorphisms [1705A/C, 1738C/T. T10/19, and (ATT)n microsatellite] were studied in normal population samples of Central Portugal and São Tomé e Príncipe, a small archipelago located in the Gulf of Guinea, West Africa. For all loci, the observed genotype distributions do not deviate from Hardy-Weinberg equilibrium. The allele frequencies found in the Portuguese population are similar to those previously described in Caucasian populations. Mother-child pair analysis for the (ATT)n microsatellite does not show deviations to the Mendelian rules. In São Tomé e Príncipe the biallelic polymorphisms 1705A/C, 1738C/T, and T10/19 presented inverse allelic frequencies when compared with the Portuguese population. Two new alleles were found at the (ATT)n microsatellite. Significant statistical differences were found between both populations. The results showed that São Tomeans had higher haplotype diversity and lower linkage disequilibrium among the polymorphic sites. The PKLR intragenic polymorphisms, commonly used in haplotype analysis with the gene mutations in PK-deficient patients, can thus be successfully employed in anthropological genetics.

Atlantic Islands↗

Y-chromosomal diversity in Europe is clinal and influenced primarily by geography, rather than by language.

Clinal patterns of autosomal genetic diversity within Europe have been interpreted in previous studies in terms of a Neolithic demic diffusion model for the spread of agriculture; in contrast, studies using mtDNA have traced many founding lineages to the Paleolithic and have not shown strongly clinal variation. We have used 11 human Y-chromosomal biallelic polymorphisms, defining 10 haplogroups, to analyze a sample of 3,616 Y chromosomes belonging to 47 European and circum-European populations. Patterns of geographic differentiation are highly nonrandom, and, when they are assessed using spatial autocorrelation analysis, they show significant clines for five of six haplogroups analyzed. Clines for two haplogroups, representing 45% of the chromosomes, are continentwide and consistent with the demic diffusion hypothesis. Clines for three other haplogroups each have different foci and are more regionally restricted and are likely to reflect distinct population movements, including one from north of the Black Sea. Principal-components analysis suggests that populations are related primarily on the basis of geography, rather than on the basis of linguistic affinity. This is confirmed in Mantel tests, which show a strong and highly significant partial correlation between genetics and geography but a low, nonsignificant partial correlation between genetics and language. Genetic-barrier analysis also indicates the primacy of geography in the shaping of patterns of variation. These patterns retain a strong signal of expansion from the Near East but also suggest that the demographic history of Europe has been complex and influenced by other major population movements, as well as by linguistic and geographic heterogeneities and the effects of drift.

Africa, Northern↗

Alternative primers for DYS391 typing: advantages of their application to forensic genetics.

The amplification of the STR DYS391, using the primers described in the Genome Data Base (GDB: G00-365-251), shows not only an additional band to the Y-specific one in males with a size range of 26 bp less than those of DYS391 locus alleles, but also a polymorphic pattern in females in the same size range as the additional band observed in males. The DYS391 pattern in families reflects a Y-specific linked locus and also a polymorphic X locus with an X-linked pattern of inheritance. A first screening in the X homologous locus allowed the identification of five different alleles. Allele frequencies were explored in different population groups for both the Y locus and the homologous locus in the X chromosome showing a similar allele distribution pattern in the X and Y homologous loci. An alternative reverse primer was designed to amplify the Y-chromosome specific STR in order to improve the specificity and applicability of this system to forensic genetics. Comparative results of the amplification with the new and the previously described primers proved that with this new primer there is a substantial increase in the specificity of the amplification. Moreover, a smaller fragment is amplified with a size out of the range of the alleles of the other Y-STRs usually used in forensic applications, therefore simplifying its inclusion in multiplex systems.

Alleles↗

Distribution of Y-chromosome STR defined haplotypes in Iberia.

Seven Y-specific STR loci (DYS19, DYS389I, DY5389II, DYS390, DYS391, DYS392 and DYS393) were studied in five populations from the Iberian Peninsula: Andalusia, Valencia, Basque Country, Galicia and Northern Portugal. Haplotype and allele frequencies of these seven Y-chromosome STRs were estimated. Observed haplotype diversities are in a range between 0.96 (Basque Country) and 0.99 (Valencia and Andalusia). Significant population differentiation was registered between Basques and all the other Iberian populations and also between Valencia and Northern Portugal.

Alleles↗

Screening of thiopurine S-methyltransferase mutations by horizontal conformation-sensitive gel electrophoresis.

The genetic polymorphism of thiopurine S-methyltransferase (TPMT) has had a highly significant clinical impact due to its association with individual variation in the toxicity and therapeutic efficiency of thiopurine drugs, which are pharmaceutical agents widely used in the treatment of several kinds of diseases. Until now, ten mutant alleles responsible for TPMT deficiency and several silent and intronic mutations have been described. In this work we present an alternative molecular method for the detection of TPMT alleles. It is an adaptation for horizontal conditions of a conformation-sensitive gel electrophoresis technique. The method has proven to be very efficient as a rapid screening approach for the study of TPMT genetic variability. The method was applied to analyse eight TPMT exons and the corresponding flanking intronic regions in a sample of unrelated healthy individuals from North Portugal. Here we report the allelic frequencies concerning TPMT-deficient alleles and several silent and intronic mutations, including two newly detected intronic polymorphisms: an A (-101) T substitution in intron 3 and a variation involving the number of T nucleotides in a DNA stretch in intron 5. Additionally, we also present data from a sample of 43 children undergoing therapy for acute lymphoblastic leukemia. In this clinical sample we have registered a statistically significant higher frequency for the TPMT*3C allele. This finding raises the question whether the TPMT genotype can contribute to any genetic predisposition for development of the malignancy.

Alleles↗

Allele frequencies of 13 short tandem repeats in population samples from the Iberian Peninsula and northern Africa.

The 13 short tandem repeat (STR) loci D3S1358, vWA, FGA, D16S539, TH01, TPOX, CSF1PO, D8S1179, D21S11, D18S51, D5S818, D13S317 and D7S820 as well as the amelogenin locus, contained in AmpFlSTR Profiler Plus and/or AmpFlSTR Cofiler and/or AmpFlSTR Green I PCR amplification kits, were studied in four populations from the Iberian Peninsula, Basques, Catalans, Andalusians and Portuguese and two North African populations (Moroccan Arabs and Berbers). The aim of the study was to obtain accurate allele frequency data and other genetic parameters of forensic interest on the main representative human groups living in Iberia and Morocco using an automated method and commercial amplification kits.

Africa, Northern↗

Genetic diversity of nine STRs in two northwest Iberian populations: Galicia and northern Portugal.

The genotyping of two population samples from Galicia and northern Portugal was performed for nine STR loci using a single multiplex reaction with the AmpF/STR Profiler Plus PCR amplification kit which co-amplifies the systems D3S1358, vWA, FGA, D8S1179, D21S11, D18S51, D5S818, D13S317, D7S820 and the XY homologous gene amelogenin. Allele frequencies for these nine tetranucleotide repeat markers were calculated and no significant differences were observed when comparing these two populations. Conformity with Hardy-Weinberg equilibrium proportions was good for all systems in both samples. The combined power of exclusion was 99.981% and 99.980% in Galicia and northern Portugal, respectively and the combined power of discrimination was greater than 99.999%. Segregation analysis of all loci detected two incompatibilities, one in D3S1358 (out of 112 meioses) and another in D7S820 (out of 104 meioses). Both could be explained by single-step mutations. In general co-amplification was good except for some relatively degraded samples in which poor amplification was observed for the largest STRs. Nevertheless the system is technically robust even when small amounts of template DNA are used and in the addition is highly informative and time-saving. However, caution should be taken in the interpretation of profiles in degraded samples and the apparently high mutation rate of D3S1358 and D7S820 should also be kept in mind.

Adult↗

Extended structural variation of a pentanucleotide repeat in the GSTP1 gene: characterisation in a normal population and in thyroid and gastric tumours.

The promoter region of the human GSTP1 gene contains a polymorphic short tandem repeat (STR) locus consisting of pentanucleotide repeat units (ATAAA). In this work we report the existence of a total of 26 alleles in a Caucasian population. While differences in size (ranging from one to five base pairs) were responsible for the major variation, in five size-defined classes, two alternative sequences were found. Automatic fragment sizing and sequencing analysis revealed that this polymorphism is of a highly complex nature in contrast with previous reports. A genetic population study was carried out on a random sample from Portugal showing no deviation from Hardy-Weinberg equilibrium. Somatic instability studies were also performed on gastric and thyroid tumours using this STR: no instability was detected in thyroid tumour tissues when compared with their normal counterpart but in gastric tumour tissues microsatellite instability (MSI) was detected in 9.6% of the cases and loss of heterozygosity (LOH) also in 9.6% of the cases studied. The results obtained with GSTP1 in gastric cancer were compared with previously reported data on MSI using BAT-26 and several dinucleotide repeat markers.

Alleles↗

Diversity of mtDNA lineages in Portugal: not a genetic edge of European variation.

The analysis of the hypervariable regions I and II of mitochondrial DNA in Portugal showed that this Iberian population presents a higher level of diversity than some neighbouring populations. The classification of the different sequences into haplogroups revealed the presence of all the most important European haplogroups, including those that expanded through Europe in the Palaeolithic, and those whose expansion has occurred during the Neolithic. Additionally a rather distinct African influence was detected in this Portuguese survey, as signalled by the distributions of haplogroups U6 and L, present at higher frequencies than those usually reported in Iberian populations. The geographical distributions of both haplogroups were quite different, with U6 being restricted to North Portugal whereas L was widespread all over the country. This seems to point to different population movements as the main contributors for the two haplogroup introductions. We hypothesise that the recent Black African slave trade could have been the mediator of most of the L sequence inputs, while the population movement associated with the Muslim rule of Iberia has predominantly introduced U6 lineages.

Europe↗

Variation in STR loci of the human myelin basic protein gene: north Portugal and São Tomé e Príncipe.

Allele frequencies and a single-base substitution polymorphism for 3 short tandem repeat (STR) loci of the human myelin basic protein (MBP) gene were evaluated in North Portugal and São Tomé e Príncipe. Strong linkage disequilibrium between loci MBPB and MBPC was found. However, the patterns of nonrandom allelic associations were very different in the 2 populations: levels of haplotypic diversity and heterozygosity were higher in the São Tomé population. Similarly, a difference in the frequency of base substitution G-->A at position 124 was found: the frequency reached 4.1% in North Portugal and 0.5% in São Tomé. In both populations it was always found to be associated with haplotypes B10/C11 and B12/C9.

Alleles↗

Clinal variation of YAP+ Y-chromosome frequencies in Western Iberia.

The potential of Y-chromosome biallelic marker haplotypes to infer population affiliations and structures was exploited to analyze four populations from the southwestern edge of Europe, namely north, central, and south Portugal and Galicia. Three markers subdividing the YAP+ lineage were analyzed: the YAP Alu element insertion itself and the SRY8299 and sY81 base substitutions; these respectively define three haplotypes known as 4, 21, and 8. Only haplotype 21 was detected presenting an increasing north-to-south frequency gradient, from 9.6% (Galicia) to 24.5% (South Portugal). This clinal distribution most likely reflects the genetic input associated with the Neolithic spread of agriculture, but we cannot exclude other movements as potential contributors to the distribution. In this context, it is interesting to note the consistency between the clinal variation and the population movement associated with Islamic rule in Iberia. The absence of haplotype 8, a marker of sub-Saharan populations, suggests that, despite the massive introductions of African slaves in historical times, there was little admixture between the African males and Western Iberian populations.

Gene Frequency↗