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      Polimorfismo G1385A del gen RNASEL y su asociación con el desarrollo de cáncer de próstata: Estudio preliminar Translated title: G138A polymorphism of the RNASEL gene and its association with the development of prostate cancer: Preliminary study

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          Abstract

          El cáncer de Próstata (CAP), es una enfermedad compleja de origen multifactorial. Se caracteriza por patrones heterogéneos de crecimiento de tejido neoplásico, que varían ampliamente en su progresión, edad de aparición y respuesta al tratamiento. Se considera la segunda causa más común de muerte por malignidad en hombres y se estima que uno de cada cinco padece de CAP en el curso de su vida. La etiología genética de la transformación neoplásica de las células prostáticas normales aún es desconocida, sin embargo, investigaciones epidemiológicas han demostrado un fuerte componente genético en su desarrollo, y sugieren tanto un patrón de herencia mendeliana como la presencia de loci de susceptibilidad a lo largo del genoma humano. Se ha descrito una región cromosómica relacionada con el CAP denominada como HPC1, en el locus 1q24-25, donde se ubica el gen RNASEL, y las mutaciones en el mismo, se han asociado con la presencia del CAP en múltiples grupos familiares. EL gen RNASEL codifica para una ribonucleasa que degrada ARN viral y celular y que interviene en la apoptosis. Se ha reportado disminución de la actividad enzimática de hasta tres veces en portadores del polimorfismo G1385A de este gen, y la misma se ha asociado frecuentemente con el desarrollo del CAP. Mediante la utilización de una variante de la Reacción en Cadena de la Polimerasa (RCP), una amplificación alelo específica, se estudiaron 103 individuos masculinos con y sin CAP pertenecientes a la población de Maracaibo, Venezuela, evidenciándose ausencia de asociación.

          Translated abstract

          Prostate Cancer (CAP), is a complex disease with a multifactorial origin. It is characterized by heterogenous patterns of growth of neoplasic tissue, varying widely in its progression, age of beginning and therapy response. It is considered as the second most common cause of death by cancer in men and, it has been estimated, that one of five, suffers of CAP through the course of his life. The genetic etiology of neoplasic transformation of normal prostate cells is still not known; nevertheless, investigations in epidemiology have demonstrated a strong genetic component in its development, suggesting so much a pattern of mendelian inheritance as the presence of loci of susceptibility throughout the human genome. It has been described a cromosomic location related to the CAP in locus 1q24-25, denominated HPC1, where the gene RNASEL is located, and the seggregation of its alleles has been associated with the development of CAP in numerous familiar groups. The RNASEL gene codifies for a ribonuclease protein that degrades viral and cellular ARN and takes part in the apoptosis. A decrease of the enzymatic activity up to three times in carriers of the G1385A polymorphism of this gene has been reported, and the same has been associated frequently with the development of CAP. Using a variant of the Polymerase Chain Reaction, Allele specific amplification, this investigation had as objective to determine the association between variant G1385A and CAP, in a sample of 103 masculine individuals with and without CAP, pertaining to the population of Maracaibo, Venezuela, An association between these variants and CAP could not be demonstrated.

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          Mendelian inheritance of familial prostate cancer.

          Previous studies have demonstrated familial clustering of prostate cancer. To define the nature of this familial aggregation and to assess whether Mendelian inheritance can explain prostate cancer clustering, proportional hazards and segregation analyses were performed on 691 families ascertained through a single prostate cancer proband. The proportional hazards analyses revealed that two factors, early age at onset of disease in the proband and multiple affected family members, were important determinants of risk of prostate cancer in these families. Furthermore, segregation analyses revealed that this clustering can be best explained by autosomal dominant inheritance of a rare (q = 0.0030) high-risk allele leading to an early onset of prostate cancer. The estimated cumulative risk of prostate cancer for carriers revealed that the allele was highly penetrant: by age 85, 88% of carriers compared to only 5% of noncarriers are projected to be affected with prostate cancer. The best fitting autosomal dominant model further suggested that this inherited form of prostate cancer accounts for a significant proportion of early onset disease but overall is responsible for a small proportion of prostate cancer occurrence (9% by age 85). These data provide evidence that prostate cancer is inherited in Mendelian fashion in a subset of families and provide a foundation for gene mapping studies of heritable prostate cancer. Characterization of genes involved in inherited prostate cancer could provide important insight into the development of this disease in general.
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            RNASEL Arg462Gln variant is implicated in up to 13% of prostate cancer cases.

            RNASEL (encoding ribonuclease L) has recently been proposed as a candidate for the hereditary prostate cancer (HPC1) gene. We determined that the RNASEL variant Arg462Gln has three times less enzymatic activity than the wildtype and is significantly associated with prostate cancer risk (P = 0.007). At least one copy of the mutated allele that causes this substitution is carried by nearly 60% of the men in our study. Men that are heterozygous with respect to the mutated allele have 50% greater risk of prostate cancer than non-carriers, and homozygotes have more than double the risk.
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              Major susceptibility locus for prostate cancer on chromosome 1 suggested by a genome-wide search.

              Despite its high prevalence, very little is known regarding genetic predisposition to prostate cancer. A genome-wide scan performed in 66 high-risk prostate cancer families has provided evidence of linkage to the long arm of chromosome 1 (1q24-25). Analysis of an additional set of 25 North American and Swedish families with markers in this region resulted in significant evidence of linkage in the combined set of 91 families. The data provide strong evidence of a major prostate cancer susceptibility locus on chromosome 1.
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                ic
                Investigación Clínica
                Invest. clín
                Universidad del Zulia (Maracaibo )
                0535-5133
                September 2009
                : 50
                : 3
                : 295-301
                Affiliations
                [1 ] Universidad del Zulia Venezuela
                Article
                S0535-51332009000300004
                d6edeb55-98cc-42d1-96ab-4a8f61f59e5b

                http://creativecommons.org/licenses/by/4.0/

                History
                Product

                SciELO Venezuela

                Self URI (journal page): http://www.scielo.org.ve/scielo.php?script=sci_serial&pid=0535-5133&lng=en
                Categories
                MEDICINE, RESEARCH & EXPERIMENTAL

                Medicine
                RNASEL,Prostate cancer,HPC1,G1385A,cáncer de próstata
                Medicine
                RNASEL, Prostate cancer, HPC1, G1385A, cáncer de próstata

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