5 resultados para Uniparental Disomy

em Repositório Institucional UNESP - Universidade Estadual Paulista "Julio de Mesquita Filho"


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OBJETIVO: descrever o fenótipo da síndrome de Silver-Russell (SSR) e apresentar um caso diagnosticado com esta afecção genética, abordando aspectos genéticos, psicológicos e fonoaudiológicos. MÉTODOS: trata-se de relato de caso de uma criança do gênero feminino, sete anos e onze meses, portadora da síndrome de Silver-Russel. Foram realizadas avaliação genética médica e molecular, avaliação psicológica, avaliação fonoaudiológica e aplicação de testes complementares. RESULTADOS: a análise molecular da região 7p11 excluiu a dissomia uniparental para este caso. No exame físico foram constatados os principais sinais clínicos da SSR que incluiu retardo no crescimento de origem pré-natal, fácies típica, assimetrias ósseas e clinodactilia do 5º dedo. A avaliação cognitiva e fonoaudiológica mostraram deficiência mental, distúrbio de linguagem oral e comprometimento das funções orais. CONCLUSÃO: o estudo deste caso possibilitou a divulgação do fenótipo da SSR com suas manifestações físicas, cognitivas e fonoaudiológicas. Embora o teste molecular não tenha confirmado um dos possíveis mecanismos etiológicos da síndrome, a avaliação genética médica constatou a presença dos principais sinais clínicos que foram correlacionados à literatura. A avaliação psicológica e fonoaudiológica apontaram para comprometimento cognitivo e de comunicação, funções orais , sugerindo que importantes alterações fonoaudiológicas podem fazer parte do fenótipo desta síndrome, ainda pouco difundida para fonoaudiólogos.

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Mitochondria are endosymbiotic organelles responsible for energy production in practically every eukaryotic cell. Their uniparental fashion of inheritance, maternally inherited in mammals, and the homogeneity of mitochondrial DNA (mtDNA) within individuals and matrilineages, are biological phenomena that remain unexplained. This paper reviews some of the recent findings on mitochondrial influences on the manner in which embryos develop and how their genotypes are inherited in mammals, with particular emphasis on the genetic bottleneck effect. Animal models carrying a mix of mtDNAs (heteroplasmic) have been produced by karyoplast and cytoplast transplantation to analyze the segregation patterns at different stages during embryogenesis, in fetuses and offspring. Comparisons performed between murine and bovine reveal interesting changes in segregation and replication of transplanted mtDNAs. We have recently obtained Bos indicus and Bos taurus fetuses and calves from embryos reconstructed using enucleated polymorphic oocytes of Bos taurus origin. These and other findings on mitochondrial biology will have important implications in determining the cytoplasmic genotype of clones and in the preservation of endangered breeds and species. (C) 1999 by Elsevier B.V.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Balanced X-autosome translocations are rare, and female carriers are a clinically heterogeneous group of patients, with phenotypically normal women, history of recurrent miscarriage, gonadal dysfunction, X-linked disorders or congenital abnormalities, and/or developmental delay. We investigated a patient with a de novo X;19 translocation. The six-year-old girl has been evaluated due to hyperactivity, social interaction impairment, stereotypic and repetitive use of language with echolalia, failure to follow parents/caretakers orders, inconsolable outbursts, and persistent preoccupation with parts of objects. The girl has normal cognitive function. Her measurements are within normal range, and no other abnormalities were found during physical, neurological, or dysmorphological examinations. Conventional cytogenetic analysis showed a de novo balanced translocation, with the karyotype 46,X,t(X;19)(p21.2;q13.4). Replication banding showed a clear preference for inactivation of the normal X chromosome. The translocation was confirmed by FISH and Spectral Karyotyping (SKY). Although abnormal phenotypes associated with de novo balanced chromosomal rearrangements may be the result of disruption of a gene at one of the breakpoints, submicroscopic deletion or duplication, or a position effect, X; autosomal translocations are associated with additional unique risk factors including X-linked disorders, functional autosomal monosomy, or functional X chromosome disomy resulting from the complex X-inactivation process.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)