Please use this identifier to cite or link to this item: https://ninho.inca.gov.br/jspui/handle/123456789/5998
Title: Analysis of a set of missense, frameshift, and in-frame deletion variants of BRCA1
Authors: Carvalho, Marcelo Alex de
Pino, Maria
Karchin, Rachel
Beddor, Jennifer
Godinho Netto, Martha
Mesquita, Rafael Dias
Rodarte, Renato Santos
Vaz, Danielle Copello
Monteiro, Viviane Alves
Manoukian, Siranoush
Colombo, Mara
Ripamonti, Carla Barbara
Rosenquist, Richard
Suthers, Graeme
Borg, Ake
Radice, Paolo
Grist, Scott
Monteiro, Alvaro
Billack, Blase
Keywords: Genes BRCA1
Breast Neoplasms
Neoplasias da Mama
Analysis
Análise
Ownership
Propriedade
Issue Date: 2009
Publisher: Mutation Research
Citation: CARVALHO, Marcelo Alex de et al. Analysis of a set of missense, frameshift, and in-frame deletion variants of BRCA1. Mutation Research, v. 660, p. 1-11, 2009.
Abstract: Germline mutations that inactivate BRCA1 are responsible for breast and ovarian cancer susceptibility. One possible outcome of genetic testing for BRCA1 is the finding of a genetic variant of uncertain significance for which there is no information regarding its cancer association. This outcome leads to problems in risk assessment, counseling and preventive care. The purpose of the present study was to functionally evaluate seven unclassified variants of BRCA1 including a genomic deletion that leads to the in-frame loss of exons 16/17 ( exons 16/17) in the mRNA, an insertion that leads to a frameshift and an extended carboxyterminus (5673insC), and five missense variants (K1487R, S1613C, M1652I, Q1826H and V1833M). We analyzed the variants using a functional assay based on the transcription activation property of BRCA1 combined with supervised learning computational models. Functional analysis indicated that variants S1613C, Q1826H, and M1652I are likely to be neutral, whereas variants V1833M, exons 16/17, and 5673insC are likely to represent deleterious variants. In agreement with the functional analysis, the results of the computational analysis also indicated that the latter three variants are likely to be deleterious. Taken together, a combined approach of functional and bioinformatics analysis, plus structural modeling, can be utilized to obtain valuable information pertaining to the effect of a rare variant on the structure and function of BRCA1. Such information can, in turn, aid in the classification of BRCA1 variants for which there is a lack of genetic information needed to provide reliable risk assessment.
Description: p. 1–11.: il. p&b.
URI: http://sr-vmlxaph03:8080/jspui/handle/123456789/5998
ISSN: 1873-135X
Appears in Collections:Artigos de Periódicos da área de Enfermagem

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