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G de Benedictis

Publications and source records attributed to G de Benedictis.

4 recordsLinked to original sources

Inherited variability of the mitochondrial genome and successful aging in humans.

Increasing data indicate that polymorphic variants of nuclear loci can affect rate and quality of aging in humans. However, the mitochondrial genome is another good candidate, because of the central role played by mitochondrial genes in oxidative phosphorylation (OXPHOS) and cell metabolism. A characteristic of the mitochondrial genome (mtDNA) is the high level of interindividual variability that ensues from high mutation rate and unilinear inheritance. Related groups of germline/inherited mtDNA polymorphisms (haplogroups) have been identified as continent-specific sets of stable/ancient/associated restriction fragment length polymorphisms in the mtDNA coding region, representing markers capable of exactly depicting the mtDNA pool of a specific population. The hypothesis can be put forward that mtDNA variants included in a haplogroup may have similar OXPHOS efficiency and therefore act as genetic factors predisposing to individual successful or unsuccessful aging. This idea can be explored by sampling groups of individuals of different ages from a well-defined population and comparing the pools of mtDNA haplogroups between samples. The results obtained by screening mtDNA haplogroups in about 800 Italians of different ages, including more than 200 centenarians, agree with the hypothesis that the inherited variability of the mitochondrial genome is associated with the chance of successful aging and longevity in humans.

Aging↗

Restriction fragment length polymorphism of human mitochondrial DNA in a sample population from Apulia (southern Italy).

Restriction fragment length polymorphism (RFLP) of human mitochondrial DNA was analysed in a sample of 87 subjects from Apulia (South Italy) by the restriction enzymes HpaI, BamHI, HaeII, MspI, AvaII, and HincII using total blood cell DNA probed by human mtDNA from placenta. Five BamHI morphs were observed, two of which are new (BamHI-4 and -5), as well as one new AvaII morph (AvaII-28). The association BamHI-4/AvaII-28 enables us to demonstrate for the first time two polymorphic BamHI sites present together in the same mtDNA molecule. In agreement with historical data the Apulian sample has been shown to be the most heterogeneous Italian population so far tested.

DNA, Mitochondrial↗

Allotypic phenotypes displaying different frequencies in healthy and beta-thalassemic sample populations.

This paper presents data on the identification of an allotypic polymorphism carried on a beta-lipoprotein in human serum. The antigen, whose inheritance is investigated in 78 families, is coded by a polymorphic locus (As) existing in 4 allelic states. The products of these alleles exhibit a serological linear subtyping pattern with respect to the alloantisera recognizing the allotypes. The allelic frequencies prove different in healthy (beta beta) and thalassemic (beta beta thal) sample populations, thus suggesting linkage dysequilibrium between the recessive alleles of the As and beta loci.

Alleles↗