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R Scozzari

Publications and source records attributed to R Scozzari.

At least 37 records · Page 2Linked to original sources

Nuclear DNA diversity in worldwide distributed human populations.

Nucleotide variation was examined in an 8 kb intronic DNA bordering exon 44 of the human dystrophin gene on Xp21. Thirty-six polymorphisms (substitutions, small insertions/deletions and one (T)n microsatellite) were found using SSCP/heteroduplex analysis of DNA samples from mixed Europeans, Papua New Guineans as well as from six African, three Asian and two Amerindian populations. In this way the European bias in the nuclear polymorphism ascertainment has been avoided. In a maximum likelihood tree constructed from the frequency data, Africans clustered separately from the non-African populations. Fifteen polymorphisms were shared among most of the populations compared, whereas 13 sites were found to be endemic to Africans and four to non-Africans. The common sites contributed most to the average heterozygosity (Hn=0.101%+/-0.023), whereas the endemic ones, being rare, had little effect on this estimate. The F(ST) values were lower for Africans (0.072) than for non-Africans (0.158), suggesting a higher level of gene exchange within Africa, corroborating the observation of a greater number of segregating sites on this continent than elsewhere. The data suggest a recent common origin of the African and non-African populations, where a greater geographical isolation of the latter resulted in a smaller number of newly acquired polymorphisms.

Cell Nucleus↗

Characterization of a small family (CAIII) of microsatellite-containing sequences with X-Y homology.

Four X-linked loci showing homology with a previously described Y-linked polymorphic locus (DYS413) were identified and characterized. By fluorescent in situ hybridization (FISH), somatic cell hybrids, and YAC screening, the X-linked members of this small family of sequences (CAIII) all map in Xp22, while the Y members map in Yq11. These loci contribute to the overall similarity of the two genomic regions. All of the CAIII loci contain an internal microsatellite of the (CA)n type. The microsatellites display extensive length polymorphism in two of the X-linked members as well as in the Y members. In addition, common sequence variants are found in the portions flanking the microsatellites in two of the X-linked members. Our results indicate that, during the evolution of this family, length variation on the Y chromosome was accumulated at a rate not slower than that on the X chromosome. Finally, these sequences represent a model system with which to analyze human populations for similar X- and Y-linked polymorphisms.

Genetic Linkage↗

Differential structuring of human populations for homologous X and Y microsatellite loci.

The global pattern of variation at the homologous microsatellite loci DYS413 (Yq11) and DXS8174 and DXS8175 (Xp22) was analyzed by examination of 30 world populations from four continents, accounting for more than 1,100 chromosomes per locus. The data showed discordant patterns of among- and within-population gene diversity for the Y-linked and the X-linked microsatellites. For the Y-linked polymorphism, all groups of populations displayed high FST values (the correlation between random haplotypes within subpopulations, relative to haplotypes of the total population) and showed a general trend for the haplotypes to cluster in a population-specific way. This was especially true for sub-Saharan African populations. The data also indicated that a large fraction of the variation among populations was due to the accumulation of new variants associated with the radiation process. Europeans exhibited the highest level of within-population haplotype diversity, whereas sub-Saharan Africans showed the lowest. In contrast, data for the two X-linked polymorphisms were concordant in showing lower FST values, as compared with those for DYS413, but higher within-population variances, for African versus non-African populations. Whereas the results for the X-linked loci agreed with a model of greater antiquity for the African populations, those for DYS413 showed a confounding pattern that is apparently at odds with such a model. Possible factors involved in this differential structuring for homologous X and Y microsatellite polymorphisms are discussed.

Female↗

Haplotype and phylogenetic analyses suggest that one European-specific mtDNA background plays a role in the expression of Leber hereditary optic neuropathy by increasing the penetrance of the primary mutations 11778 and 14484.

mtDNAs from 37 Italian subjects affected by Leber hereditary optic neuropathy (LHON) (28 were 11778 positive, 7 were 3460 positive, and 2 were 14484 positive) and from 99 Italian controls were screened for most of the mutations that currently are associated with LHON. High-resolution restriction-endonuclease analysis also was performed on all subjects, in order to define the phylogenetic relationships between the mtDNA haplotypes and the LHON mutations observed in patients and in controls. This analysis shows that the putative secondary/intermediate LHON mutations 4216, 4917, 13708, 15257, and 15812 are ancient polymorphisms, are associated in specific combinations, and define two common Caucasoid-specific haplotype groupings (haplogroups J and T). On the contrary, the same analysis shows that the primary mutations 11778, 3460, and 14484 are recent and are due to multiple mutational events. However, phylogenetic analysis also reveals a different evolutionary pattern for the three primary mutations. The 3460 mutations are distributed randomly along the phylogenetic trees, without any preferential association with the nine haplogroups (H, I, J, K, T, U, V, W, and X) that characterize European populations, whereas the 11778 and 14484 mutations show a strong preferential association with haplogroup J. This finding suggests that one ancient combination of haplogroup J-specific mutations increases both the penetrance of the two primary mutations 11778 and 14484 and the risk of disease expression.

DNA Primers↗

Classification of European mtDNAs from an analysis of three European populations.

Mitochondrial DNA (mtDNA) sequence variation was examined in Finns, Swedes and Tuscans by PCR amplification and restriction analysis. About 99% of the mtDNAs were subsumed within 10 mtDNA haplogroups (H, I, J, K, M, T, U, V, W, and X) suggesting that the identified haplogroups could encompass virtually all European mtDNAs. Because both hypervariable segments of the mtDNA control region were previously sequenced in the Tuscan samples, the mtDNA haplogroups and control region sequences could be compared. Using a combination of haplogroup-specific restriction site changes and control region nucleotide substitutions, the distribution of the haplogroups was surveyed through the published restriction site polymorphism and control region sequence data of Caucasoids. This supported the conclusion that most haplogroups observed in Europe are Caucasoid-specific, and that at least some of them occur at varying frequencies in different Caucasoid populations. The classification of almost all European mtDNA variation in a number of well defined haplogroups could provide additional insights about the origin and relationships of Caucasoid populations and the process of human colonization of Europe, and is valuable for the definition of the role played by mtDNA backgrounds in the expression of pathological mtDNA mutations.

Base Sequence↗

Novel tetranucleotide repeat polymorphism in the human adenosine deaminase gene: interethnic comparison of three major human groups.

A new tetranucleotide repeat polymorphism was revealed at the human adenosine deaminase (ADA) locus by using the polymerase chain reaction and denaturing polyacrylamide gel electrophoresis. Allele frequencies were estimated in seven populations from three major ethnic groups. Heterozygosity values were calculated and found to differ significantly between Africans and non-Africans.

Adenosine Deaminase↗

Geographical structuring in the mtDNA of Italians.

Geographical patterns of mtDNA variation were studied in 12 Italian samples (1072 individuals) by two different spatial autocorrelation methods. Separate analyses of the frequencies of 12 restriction morphs show North-South clines, differences between Sardinia and the mainland populations, and the effects of isolation by distance. A recently developed autocorrelation statistic summarizing molecular similarity at all sites (AIDA; autocorrelation index for DNA analysis) confirms the presence of a clinical pattern; differences between random pairs of haplotypes tend to increase with their geographical distance. The partition of gene diversity, however, reveals that most variability occurs within populations, whereas differences between populations are minor (GST = 0.057). When the data from the 12 samples are pooled, two descriptors of genetic variability (number of polymorphic sites and average sequence difference between pairs of individuals) do not behave as expected under neutrality. The presence of clinal patterns, Tajima's tests, and a simulation experiment agree in suggesting that population sizes increased rapidly in Italy and Sicily but not necessarily so in Sardinia. The distribution of pairwise sequence differences in the Italian peninsula (excluding Sardinia) permits a tentative location of the demographic increase between 8000 and 20,500 years ago. These dates are consistent with archaeological estimates of two distinct expansion processes, occurring, respectively, in the Neolithic and after the last glacial maximum in the Paleolithic. Conversely, there is no genetic evidence that such processes have had a major impact on the Sardinian population.

Biological Evolution↗

An MspI polymorphism in the X-specific region proximal to the pseudoautosomal boundary. A new example of a unique "African" marker?

A polymorphic MspI site was located in the X-specific region proximal to the pseudoautosomal boundary. Two alleles defined by the absence or the presence of the MspI site were detected by the polymerase chain reaction (PCR) in a sample of Bantu-speaking individuals from Cameroon. No variation for this site was observed in a population sample from Italy.

Africa↗

Genetic studies in Cameroon: mitochondrial DNA polymorphisms in Bamileke.

In two population samples of 77 Bamileke (Bantu sensu lato) and 18 Bakaka (Bantu sensu stricto) from southwestern Cameroon, the mtDNA RFLPs for the HpaI, HaeII, MspI, AvaII, and HincII enzymes were studied. Two of the MspI morphs had not been reported before. Six new types were found, four of which represent new combinations of previously described morphs. The AvaII morph 3 was found in association with the "African" HpaI morph 3. This finding is in line with previous observations in Negroids and demonstrates the usefulness of this combination as an indicator of black African ancestry. Two differences were noted between the groups: a lower frequency of HpaI morph 3 and a higher frequency of HaeII morph 4 in the Bakaka with respect to the Bamileke (0.44 versus 0.62 and 0.17 versus 0.03, respectively). The importance of these differences could not be evaluated because the Bakaka sample was too small. Nevertheless, because the Bamileke show a relatively low frequency of mtDNA type 1 (2.1.1.1.-) and high frequencies of mtDNA types 2 (3.1.1.1.3.-) and 7 (3.1.1.1.1.-), they can be placed with the other Negroids so far examined, but they are closer to the Senegalese than to the Bantu from South Africa. In comparing the Bamileke and the Bantu, mtDNA type 3 (3.1.1.2.2.-) appears particularly discriminative because it is present in all the Bantu subgroups examined but not in the Bamileke. mtDNA type 39 (2.1.4.1.1.-), which was observed only in the Bamileke, might be considered likewise discriminative, although to a lesser degree.

Adult↗

Genetic studies on the Senegal population. II. Polymorphisms of the plasma proteins F13A, F13B, ORM1, AHSG, C6, C7, and APOC2.

Using isoelectric focusing and immunoblotting techniques, we tested 270 plasma samples from 3 populations of Senegal (Wolof, Peul, Tukulor) to determine genetic variation at 7 protein loci (F13A, F13B, ORM1, AHSG, C6, C7, APOC2). Four of the seven systems (F13A, ORM1, AHSG, C6) have not been studied previously in sub-Saharan Africa, and one system (C7) has never been examined in any population of African ancestry. The assumption that F13B*6, F13B*23, and APOC2*2 represent African marker alleles is supported by this study. At the AHSG locus we observed a four-allele polymorphism rather than the two-allele polymorphism commonly seen in other ethnic groups. At the C6 locus, in addition to the two common alleles C6*A and C6*B, we observed three other alleles, one of which (C6*A3), found at polymorphic frequencies, seems to be another example of a unique African allele. The C7 locus was found to be monomorphic in the Peul but polymorphic in the Wolof and the Tukulor. At the F13A and ORM1 loci, Senegalese have allele frequencies similar to those reported for American blacks. All three Senegalese samples display typical African features, such as a high frequency of the F13B*2 allele and the presence of the APOC2*2 allele at a polymorphic level. However, some differences in allele frequencies have been found between the three groups, and this could have implications for reconstructing their remote history.(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗

Mitochondrial DNA polymorphisms among Hindus: a comparison with the Tharus of Nepal.

The polymorphisms of mitochondrial DNA for the restriction enzymes HpaI, BamHI, HaeII, MspI, AvaII and HinecII were studied in a sample of 79 Hindus, 45 from New Delhi (India) and 34 from Terai (Nepal), both to characterize another Caucasian population and to investigate some possible Hindu component in the genetic structure of the Tharus, a Nepalese population, the anthropological position of which is still disputed. 1. A new BamHI polymorphism was detected: about 5% of the Hindu mtDNAs have lost the site at 14258 bp and lack any BamHI site. Once again a BamHI polymorphism was found in a Caucasian population. 2. New site mutations were found to yield morphs previously described (MspI-7, AvaII-18). 3. Variant morphs for two different enzymes were found due to a shared mutation (morphs BamHI-0/AvaII-30 and morphs MspI-7Hindu/AvaII-18Hindu). 4. Comparison between Hindu and Tharu data does not show any evidence of a specific Indian component in the Tharu genetic structure and allows us to conclude that Tharus are clearly differentiated from modern Hindus.

Adult↗

Y chromosome DNA polymorphisms in human populations: differences between Caucasoids and Africans detected by 49a and 49f probes.

Several Y-specific TaqI fragments are recognized by 49a and 49f probes in human male DNA digests. The occurrence of polymorphic variations in six of these fragments (A, B, C, D, F and I) has recently been reported, providing a potentially powerful tool for the study of the population genetics of the Y chromosome. The 49a-49f/TaqI polymorphisms were studied in 121 Africans (Senegal and Cameroon) and 125 Caucasians (Italy). In addition to the variability described already, four new bands were observed. Moreover, three patterns were found in which bands constantly present so far (G, O and H-P-R) were missing. At variance with previously reported findings, the coexistence of two different fragments of the same 'allelic' series (A or D) was frequently observed in the Italian sample (10.4%). For some of these 'double-banded' patterns their holoandric transmission could be demonstrated by family studies. In the light of these new findings, the hypothesis of A or D fragments being allelic forms, as advanced by the authors who first described these polymorphisms, has to be reconsidered. A total of 34 haplotypes were encountered, 22 of which are new. The Africans tested all lack C and D fragments. Moreover, about 80% of them are characterized by a band, A1, not present in the Italian group. The combination of A1C0D0 could therefore be a powerful genetic marker of paternal African ancestry. This combination occurs in five haplotypes, one of which, haplotype IV, accounts for 68% of the African sample. In contrast with the results of the mtDNA analysis on the same population samples, the degree of variability displayed by the Y chromosome sequences appears to be much lower in Africans than in Caucasians.

Africa↗

Mitochondrial DNA polymorphisms in Italy. III. Population data from Sicily: a possible quantitation of maternal African ancestry.

mtDNA polymorphisms were studied in a sample of 90 individuals of the Sicilian population using six restriction enzymes: HpaI, BamHI, HaeII, MspI, AvaII and HincII. (1) Three new patterns, for MspI, AvaII and HincII, have been detected. (2) At least two different mutations were found to account for both the AvaII morph 3 and the AvaII morph 9 as in many other Caucasian groups so far examined. (3) Seventeen types were found; of these six are new. The frequency (54.5%) of type 1-2 (2.1.1.1.1.2) is lower than in the rest of Italy whereas those of type 6-2 (2.1.2.1.1.2) (10.0%) and type 18-2 (2.3.1.4.9*.2) (12.2%) lie at the upper level of the Italian range. The 18-derivative, type 57-2 (2.3.1.4.13*.2), which is consistently found in all Italian samples, is present also among Sicilians with an incidence of 2.2%. (4) Of particular interest is that the HpaI-3/AvaII-3 complex, which is unique to groups of African ancestry, was found in Sicily at a frequency of 4.4%. For the first time an estimate of the amount of gene flow from Blacks to the Sicilian gene pool could be obtained.

Africa↗

Chromosome and blood marker studies in families of patients affected by xeroderma pigmentosum and trichothiodystrophy.

Chromosome and blood marker studies were performed in the families of 4 patients in which the association of 2 rare recessive Mendelian disorders, xeroderma pigmentosum (XP-D) and trichothiodystrophy (TTD), was present. Blood genotypes did not indicate any linkage with the pathologic condition, nor any segregation anomaly. Cytogenetic analysis using high-resolution banding techniques showed a normal karyotype both in the heterozygous and in the homozygous individuals. These findings lead us to exclude a cytologically detectable chromosome rearrangement, such as a microdeletion, as a possible cause of the association of XP-D and TTD in our patients.

Blood Group Antigens↗