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1.
Braz J Otorhinolaryngol ; 79(1): 95-9, 2013.
Article in English, Portuguese | MEDLINE | ID: mdl-23503914

ABSTRACT

UNLABELLED: Hearing impairment affects about 1 in 1000 newborns. Mutations in the connexin 26 (GJB2) gene rank among the most frequent causes of non-syndromic deafness in different populations, while delGJB6-D13S1830 mutation located in the DFNB30 locus is known to cause sensorineural hearing loss. Despite the many studies on the involvement of GJB2 mutations in hearing impairment in different populations, there is little information on genetic deafness in Brazil, especially in the Amazon region. OBJECTIVE: To determine the prevalence of GJB2 mutations and delGJB6-D13S1830 in 77 sporadic non-syndromic deaf patients. METHOD: The coding region of the GJB2 gene was sequenced and polymerase chain reaction was performed to detect the delGJB6-D13S1830 mutation. RESULTS: Mutant allele 35delG was found in 9% of the patients (7/77). Mutations M34T and V95M were detected in two distinct heterozygous patients. Non-pathogenic mutation V27I was detected in 28.6% of the patients (22/77). None of the deaf patients carried the delGJB6-D13S1830 mutation. CONCLUSION: Mutant alleles on gene GJB2 were observed in 40% (31/77) of the subjects in the sample. Pathogenic variants were detected in only 12% (9/77) of the individuals. More studies are required to elucidate the genetic causes of hearing loss in miscegenated populations.


Subject(s)
Connexins/genetics , Genetic Predisposition to Disease , Hearing Loss, Sensorineural/genetics , Mutation/genetics , Child , Connexin 26 , Gene Frequency , Genotype , Humans , Polymerase Chain Reaction
2.
Braz. j. otorhinolaryngol. (Impr.) ; 79(1): 95-99, jan.-fev. 2013. tab
Article in Portuguese | LILACS | ID: lil-667982

ABSTRACT

A deficiência auditiva afeta cerca de 1 em cada 1000 recém-nascidos. Mutações no gene da conexina 26 (GJB2) são as causas mais frequentes de surdez não sindrômica em diferentes populações e é sabido que a mutação delGJB6-D13S1830 em DFNB30 é causadora de surdez neurossensorial. Muitos estudos descrevem o envolvimento de mutações no gene GJB2 com a deficiência auditiva em diferentes populações. Entretanto, existe pouca informação sobre a surdez genética no Brasil, especialmente na região Amazônica. OBJETIVO: Determinar a prevalência de mutações no gene GJB2 e da mutação delGJB6-D13S1830 em 77 casos esporádicos de surdez não sindrômicas. MÉTODO: A região codificante do gene GJB2 foi sequenciada e a PCR foi realizada para detectar a mutação delGJB6-D13S1830. RESULTADOS: O alelo 35delG foi encontrado em 9% dos pacientes (7/77). As mutações M34T e V95M foram detectadas em dois distintos pacientes heterozigotos. A mutação não patogênica V27I foi detectada em 28,6% (22/77). Não foi detectada a mutação delGJB6-D13S1830 em nenhum paciente estudado. CONCLUSÃO: Alelos mutantes no gene GJB2 foram observados em 40% (31/77) da amostra. Variantes patogênicas foram detectadas em apenas 12% (9/77). Mais estudos são necessários para elucidar causas genéticas de deficiência auditiva em populações miscigenadas.


Hearing impairment affects about 1 in 1000 newborns. Mutations in the connexin 26 (GJB2) gene rank among the most frequent causes of non-syndromic deafness in different populations, while delGJB6-D13S1830 mutation located in the DFNB30 locus is known to cause sensorineural hearing loss. Despite the many studies on the involvement of GJB2 mutations in hearing impairment in different populations, there is little information on genetic deafness in Brazil, especially in the Amazon region. OBJECTIVE: To determine the prevalence of GJB2 mutations and delGJB6-D13S1830 in 77 sporadic non-syndromic deaf patients. METHOD: The coding region of the GJB2 gene was sequenced and polymerase chain reaction was performed to detect the delGJB6-D13S1830 mutation. RESULTS: Mutant allele 35delG was found in 9% of the patients (7/77). Mutations M34T and V95M were detected in two distinct heterozygous patients. Non-pathogenic mutation V27I was detected in 28.6% of the patients (22/77). None of the deaf patients carried the delGJB6-D13S1830 mutation. CONCLUSION: Mutant alleles on gene GJB2 were observed in 40% (31/77) of the subjects in the sample. Pathogenic variants were detected in only 12% (9/77) of the individuals. More studies are required to elucidate the genetic causes of hearing loss in miscegenated populations.


Subject(s)
Child , Humans , Connexins/genetics , Genetic Predisposition to Disease , Hearing Loss, Sensorineural/genetics , Mutation/genetics , Gene Frequency , Genotype , Polymerase Chain Reaction
3.
Genet Mol Biol ; 34(1): 31-4, 2011 01.
Article in English | MEDLINE | ID: mdl-21637539

ABSTRACT

The accumulation of somatic mutations in mtDNA is correlated with aging. In this work, we sought to identify somatic mutations in the HVS-1 region (D-loop) of mtDNA that might be associated with aging. For this, we compared 31 grandmothers (mean age: 63 ± 2.3 years) and their 62 grandchildren (mean age: 15 ± 4.1 years), the offspring of their daughters. Direct DNA sequencing showed that mutations absent in the grandchildren were detected in a presumably homoplasmic state in three grandmothers and in a heteroplasmic state in an additional 13 grandmothers; no mutations were detected in the remaining 15 grandmothers. However, cloning followed by DNA sequencing in 12 grandmothers confirmed homoplasia in only one of the three mutations previously considered to be homoplasmic and did not confirm heteroplasmy in three out of nine grandmothers found to be heteroplasmic by direct sequencing. Thus, of 12 grandmothers in whom mtDNA was analyzed by cloning, eight were heteroplasmic for mutations not detected in their grandchildren. In this study, the use of genetically related subjects allowed us to demonstrate the occurrence of age-related (> 60 years old) mutations (homoplasia and heteroplasmy). It is possible that both of these situations (homoplasia and heteroplasmy) were a long-term consequence of mitochondrial oxidative phosphorylation that can lead to the accumulation of mtDNA mutations throughout life.

4.
Genet. mol. biol ; 34(1): 31-34, 2011. tab
Article in English | LILACS | ID: lil-573705

ABSTRACT

The accumulation of somatic mutations in mtDNA is correlated with aging. In this work, we sought to identify somatic mutations in the HVS-1 region (D-loop) of mtDNA that might be associated with aging. For this, we compared 31 grandmothers (mean age: 63 ± 2.3 years) and their 62 grandchildren (mean age: 15 ± 4.1 years), the offspring of their daughters. Direct DNA sequencing showed that mutations absent in the grandchildren were detected in a presumably homoplasmic state in three grandmothers and in a heteroplasmic state in an additional 13 grandmothers; no mutations were detected in the remaining 15 grandmothers. However, cloning followed by DNA sequencing in 12 grandmothers confirmed homoplasia in only one of the three mutations previously considered to be homoplasmic and did not confirm heteroplasmy in three out of nine grandmothers found to be heteroplasmic by direct sequencing. Thus, of 12 grandmothers in whom mtDNA was analyzed by cloning, eight were heteroplasmic for mutations not detected in their grandchildren. In this study, the use of genetically related subjects allowed us to demonstrate the occurrence of age-related (> 60 years old) mutations (homoplasia and heteroplasmy). It is possible that both of these situations (homoplasia and heteroplasmy) were a long-term consequence of mitochondrial oxidative phosphorylation that can lead to the accumulation of mtDNA mutations throughout life.


Subject(s)
Humans , Male , Female , Aging , DNA, Mitochondrial , Mitochondria
5.
Int J Legal Med ; 123(1): 89-94, 2009 Jan.
Article in English | MEDLINE | ID: mdl-19048268

ABSTRACT

A new polymorphic INDEL was detected at the X-STR GATA172D05 flanking region, which corresponds to an 18-bp deletion, 141 bp upstream the TAGA repeat motif. This INDEL was found to be polymorphic in different population samples from Native Americans, Africans, and Europeans as well as in an admixed population from the Amazonia (Belém). Gene diversities varied between 37.5% in Native Americans and 49.9% in Africans. Comparison between human and chimpanzee sequences showed that the ancestral state corresponds to the presence of two copies of 18 bp, detected in both species; and the mutated allele has lost one of these two copies. The simultaneous analysis of the short tandem repeat (STR) and INDEL variation showed an association between the INDEL ancestral allele with the shorter STR alleles. High diversities were found in all population groups when combining the information provided by the INDEL and STR variation. Gene diversities varied between 76.7% in Native Americans and 80.6% in both Portugal and Belém.


Subject(s)
INDEL Mutation , Polymorphism, Genetic , Tandem Repeat Sequences , X Chromosome , Animals , DNA Primers , Gene Frequency , Haplotypes , Humans , Male , Polymerase Chain Reaction , Racial Groups/genetics
6.
Med Mycol ; 47(2): 119-23, 2009 Mar.
Article in English | MEDLINE | ID: mdl-18651310

ABSTRACT

Lacazia loboi is the etiologic agent of Jorge Lobo's disease, a cutaneous and subcutaneous mycosis endemic to Latin America tropical regions and characterized by chronic nodular or keloidal lesions which develop after traumatic events. A new method for the extraction of L. loboi yeast cells from biopsies of lobomycosis skin lesions is presented. The method is based on the proteolytic action of the enzyme dispase which is known for its action against fibronectin and collagen type IV. Fungal identification was based on histological examination of the biological material and molecular analysis based on 18S ribosomal sequences. Observations under optic and fluorescence microscopy proved the efficacy of enzymatic isolation of the lobomycosis etiologic agent, as well as identifying the organism's main parasitic characteristics. Molecular phylogenetic analysis corroborated the histological examination and indicated L. loboi relationship with other members of the Onygenales. Use of dispase proved to be ideal for the isolation of L. loboi from human biopsies, shows promise as an important tool for improving biological studies of this peculiar fungus.


Subject(s)
Dermatomycoses/microbiology , Endopeptidases/metabolism , Onygenales/isolation & purification , Skin/metabolism , Skin/microbiology , Biopsy , Dermatomycoses/diagnosis , Humans , Male , Middle Aged , Mycology/methods , Onygenales/classification , Onygenales/genetics , Phylogeny , RNA, Ribosomal, 18S/genetics , Sequence Analysis, DNA , Skin/pathology
7.
Mem. Inst. Oswaldo Cruz ; 101(supl.2): 15-23, Dec. 2006. tab, ilus
Article in English | LILACS | ID: lil-441338

ABSTRACT

The present paper discusses mtDNA and taphonomy of human remains from Moa, Beirada, and Zé Espinho sambaquis of Saquarema, state of Rio de Janeiro, Brazil. New human bone dating by 14C-AMS for Moa archeological site (3810+50 BP - GX-31826-AMS) is included. Preservation of microscopic lamellae and DNA is not related to the macroscopic integrity of the bones. Results here suggest that the preservation of amplifiable DNA fragments may have relation to the preservation of the lamellar arrangement as indicated by optical microscopic examination (polarized light). In 13 human bone fragments from Moa, Beirada, and Zé Espinho it was possible to sequence mtDNA from the 3 individuals of Moa, and from 1 of 4 individuals of Beirada, whose bones also show extensive areas with preserved lamellar structures. The 6 human bone fragments of Zé Espinho and 3 of the 4 fragments of Beirada showed extensive destruction of cortical microstructure represented by cavities, intrusive minerals, and agglomerated microscopic bodies of fungi and bacteria; it was not possible to extract mtDNA from these samples. The results support the hypothesis that the preservation of the microscopic osteon organization is a good predictor for DNA preservation. It was also confirmed the C haplogroup antiquity in Brazil.


Subject(s)
Humans , Archaeology , Bone and Bones , DNA, Mitochondrial/genetics , Fossils , Brazil , Paleontology/methods
8.
Mem Inst Oswaldo Cruz ; 101 Suppl 2: 15-23, 2006 Dec 05.
Article in English | MEDLINE | ID: mdl-17308804

ABSTRACT

The present paper discusses mtDNA and taphonomy of human remains from Moa, Beirada, and Zé Espinho sambaquis of Saquarema, state of Rio de Janeiro, Brazil. New human bone dating by 14C-AMS for Moa archeological site (3810+50 BP - GX-31826-AMS) is included. Preservation of microscopic lamellae and DNA is not related to the macroscopic integrity of the bones. Results here suggest that the preservation of amplifiable DNA fragments may have relation to the preservation of the lamellar arrangement as indicated by optical microscopic examination (polarized light). In 13 human bone fragments from Moa, Beirada, and Zé Espinho it was possible to sequence mtDNA from the 3 individuals of Moa, and from 1 of 4 individuals of Beirada, whose bones also show extensive areas with preserved lamellar structures. The 6 human bone fragments of Zé Espinho and 3 of the 4 fragments of Beirada showed extensive destruction of cortical microstructure represented by cavities, intrusive minerals, and agglomerated microscopic bodies of fungi and bacteria; it was not possible to extract mtDNA from these samples. The results support the hypothesis that the preservation of the microscopic osteon organization is a good predictor for DNA preservation. It was also confirmed the C haplogroup antiquity in Brazil.


Subject(s)
Archaeology , Bone and Bones , DNA, Mitochondrial/genetics , Fossils , Brazil , Humans , Paleontology/methods
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