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M Baiget

Publications and source records attributed to M Baiget.

At least 19 recordsLinked to original sources

BRCA2 germ-line mutations in Spanish male breast cancer patients.

BACKGROUND: Mutations in the BRCA2 gene account for the majority of the families with male and female breast cancer cases, and a number of BRCA2 mutations have been reported in males with breast cancer. The aim of this study was to characterise BRCA2 germ-line mutations in Spanish male breast cancer patients. PATIENTS AND METHODS: We screened DNA from 11 affected men and 6 women with breast cancer (BC) who had an affected male relative (father or brother). Exons 2-9 and 12-27 were screened by SSCP, and exons 10 and 11 were screened by PTT. PCR products with a variant band were sequenced. RESULTS: Three BRCA2 frameshift mutations were identified (17.6%): the 3374delA in codon 1049 (exon 11), 6857delAA in codon 2010 (exon 11), and 9254delATCAT in codon 3009 (exon 23). These mutations were present in patients with affected first-degree relatives (3 of 9, 33%). The proportion of male patients with a family history of BC in at least one first-degree relative was 53%. CONCLUSIONS: There is an association between BRCA2 mutations and male breast cancer, especially in those with a family history of BC. The high prevalence of BRCA2 mutations among males should be considered when estimating risk for female relatives. All new male cases of BC should be regarded as being possibly inherited and should be fully investigated.

Adult↗

Complex patterns of male germline instability and somatic mosaicism in myotonic dystrophy type 1.

The genetic basis of myotonic dystrophy type 1 (DM1) is the expansion of a CTG repeat in the 3' untranslated region of DM1PK. Once into the disease range, the repeat becomes highly unstable and is biased toward expansion in both somatic and germline tissues. Intergenerational differences usually reveal an increase in allele length, concordant with the clinical anticipation characteristic of DM1, but there have also been cases with intergenerational contractions of the repeat length, accompanied by apparent anticipation. In order to gain a better understanding of this intergenerational behaviour, we have obtained semen samples from six DM males and used single molecule analyses to compare the allele distributions present in their sperm and blood with those of their offspring. We have confirmed that the male germline mutational pathway is distinct from that of the soma, but the extent of variation is highly variable from one individual to another and not obviously correlated with progenitor allele length. Nonetheless, in all cases the alleles present in the father's sperm overlap with those observed in their offspring. These data also provide further indications that the interpretation of intergenerational transmissions by standard analyses is frequently compromised by the masking of germline differences by age-dependent somatic expansion in the parent.

Adolescent↗

Prevalence of 2314delG mutation in Spanish patients with Usher syndrome type II (USH2).

The Usher syndrome (USH) is a group of autosomal recessive diseases characterized by congenital sensorineural hearing loss and retinitis pigmentosa. Three clinically distinct forms of Usher syndrome have so far been recognized and can be distinguished from one another by assessing auditory and vestibular function. Usher syndrome type II (USH2) patients have congenital moderate-to-severe nonprogressive hearing loss, retinitis pigmentosa, and normal vestibular function. Genetic linkage studies have revealed genetic heterogeneity among the three types of USH, with the majority of USH2 families showing linkage to the USH2A locus in 1q41. The USH2A gene (MIM 276901) has been identified: three mutations, 2314delG, 2913delG, and 4353-54delC, were initially reported in USH2A patients, the most frequent of which is the 2314delG mutation. It has been reported that this mutation can give rise to typical and atypical USH2 phenotypes. USH2 cases represent 62% of all USH cases in the Spanish population, and 95% of these cases have provided evidence of linkage to the USH2A locus. In the present study, the three reported mutations were analyzed in 59 Spanish families with a diagnosis of USH type II. The 2314delG was the only mutation identified in our population: it was detected in 25% of families and 16% of USH2 chromosomes analyzed. This study attempts to estimate the prevalence of this common mutation in a homogeneous Spanish population.

Alleles↗

BRCA1 mutation analysis in 83 Spanish breast and breast/ovarian cancer families.

A group of 83 Spanish BC/OC families were analysed for BRCA1 germ-line mutations. Analysis of the entire coding sequence was carried out by SSCP and PTT. We identified 5 frameshift mutations: 185delAG (2 times), 189insTGTC, 1241delAC, and 5537delA and 3 missense mutations in BRCA1: 330A > G, 1240C > T, and 5263G > A. The 185delAG mutation was identified in 2 families. One of them was the only Gypsy family participating in our study. All carriers shared the known founder haplotype, although they did not have any Jewish ancestry. Three frameshift mutations were found among the 14 families with 3 or more BC cases and 1 or more OC, which results in a higher percentage (21.4%) of BRCA1 mutations in this group of high risk families. Two missense mutations were found in families with 2 or 3 BC and no OC, indicating a low proportion (4.8%) of mutations in these families. There was no association between bilateral BC and a mutation carrier status. The frequency of BRCA1 involvement is lower than that of any other country hitherto reviewed. Our results highlight the influence of geographical and ethnic origin of the population studied.

Adult↗

Two contiguously located germline BRCA1 mutations in a Spanish early-onset breast cancer family.

We identified two BRCA1 mutations in a high risk breast cancer family: the missense 1240 C > T (Thr > Ile) and the 1241delAC at codon 374, which results in a stop at codon 376. Both were contiguously located in the same BRCA1 gene, in a motif of 11 amino acids, which is highly conserved across human, canine and murine species. The presence of missense mutations in this motif in breast-cancer families suggests an important functional role for this protein region and a potential deleterious effect of the 1240C > T mutation.

Animals↗

[The identification of a new mutation in the BRCA2 gene by protein truncation analysis in a Spanish family with hereditary breast cancer].

The BRCA2 mutations are implicated in a high percentage of hereditary breast cancer cases. We report a novel mutation in a Spanish breast cancer family. We analyzed DNA samples of the proband and of the living first and second degree relatives. Exon 11 of BRCA2 gene were screened by the protein truncation test and direct sequencing. We identified a novel mutation, 6857 delAA, in three affected women, diagnosed of breast cancer at 29, 51 and 45 years of age, respectively, and in a healthy male. The BRCA2 mutation seems to be implicated in the development of early-onset breast cancer cases in this family. Identification of this novel mutation adds to the information on BRCA2 gene in hereditary breast cancer in Spanish population.

Adult↗

[Mutations in the BRCA1 gene in young Spanish women with breast cancer].

BACKGROUND: Germline mutations in the BRCA1 gene have been associated with familial breast/ovarian cancer. Furthermore, women diagnosed of early-onset breast cancer have a higher probability of being carriers of BRCA1 mutations. Our aim was to know prevalence of BRCA1 mutations in women with breast cancer diagnosed before 40 years. PATIENTS AND METHODS: We analyzed genomic DNA samples of 159 women with early-onset breast cancer. Ten fragments of BRCA1 gene covering the 36% of cases with mutations described in the literature were screened. Analysis involved polymerase chain reaction (PCR), single-strand conformation polymorphisms (SSCP) and direct sequencing. RESULTS: Three germline BRCA1 mutations were identified, one of them not previously described. Two mutations were found in women with familial history of breast cancer. Five additional rare variants and polymorphisms were also detected. CONCLUSIONS: The absence of recurrent mutations or mutations detected in other countries, except for the 185delAG mutation, present in Ashkenazim population, shows the influence of ethnic and geographic origin of population studied, and illustrates the difficulties of establishing DNA-based screening tests for hereditary breast cancer.

Adolescent↗

Novel mutations in the muscle chloride channel CLCN1 gene causing myotonia congenita in Spanish families.

Mutations in the muscular voltage-dependent chloride channel gene (CLCN1), located at 7q35, lead to recessive and dominant myotonia congenita. We report four novel mutations identified in this gene, after clinical, electromyographic, and genetic studies performed on 13 unrelated families. Two of the four mutations (2512insCTCA and A218T) were identified in families with Thomsen's disease, one (Q658X) in a family with Becker's disease, and the fourth (R669C) in a presumably sporadic patient with the Becker phenotype. Although identification of the mutations allows us to establish some genotype/phenotype correlations, this does not wholly account for the clinical heterogeneity and the inheritance patterns of the disease.

Chloride Channels↗

Prevalence of BRCA1 and BRCA2 Jewish mutations in Spanish breast cancer patients.

We screened the 185delAG and 5382insC (BRCA1) and the 6174delT (BRCA2) mutation in 298 Spanish women with breast cancer. Two women (one with Sephardic ancestors) presented the 185delAG mutation and the same haplotype reported in Ashkenazim with this mutation. This suggests a common origin of the 185delAG in both Sephardic and Ashkenazi populations.

Adult↗

Mutation analysis of the RPGR gene reveals novel mutations in south European patients with X-linked retinitis pigmentosa.

The RPGR (retinitis pigmentosa GTPase regulator) gene has been shown to be mutated in 10-20% of patients with X-linked retinitis pigmentosa (XLRP), a severe form of inherited progressive retinal degeneration. A total of 29 different RPGR mutations have been identified in northern European and United States patients. We have performed mutation analysis of the RPGR gene in a cohort of 49 southern European males affected with XLRP. By multiplex SSCA and automatic direct sequencing of all 19 RPGR exons, seven different and novel mutations were identified in eight of the 49 families; these include three splice site mutations, two microdeletions, and two missense mutations. RNA analysis showed that the three splice site defects resulted in the generation of aberrant RPGR transcripts. Six of these mutations were detected in the conserved amino-terminal region of RPGR protein, containing tandem repeats homologous to the RCC1 protein, a guanine nucleotide-exchange factor for Ran-GTPase. Several exonic and intronic sequence variations were also detected. None of the RPGR mutations reported in other populations were identified in our series. Our results are consistent with the notions of heterogeneity and minority causation of XLRP by mutations in RPGR in Caucasian populations.

Base Sequence↗

[Identification of 2 allelic mutations of the gene of the phosphodiesterase beta subunit in a Spanish family with recessive autosomic retinitis pigmentosa].

BACKGROUND: Retinitis pigmentosa (RP) is a group of inherited eye disorders that affect photoreceptor and pigment epithelial function. Mutations in different genes involved in the phototransduction process have been described in patients with autosomal recessive RP. PATIENTS AND METHODS: We examined the gene coding the beta subunit of the phosphodiesterase (PDEB) in a ARRP family with two affected sisters. SSCP (single stand conformational polymorphism) analysis of the coding region of the gene showed abnormal bands in two different exons. PCR products showing SSCP aberrant patterns were subsequently sequenced. RESULTS: The two affected sisters had inherited from their father a PDEB gene with a known mutation (Gln298X) and a rare variant and from their mother a PDEB gene with a new mutation: Asp600Asn. CONCLUSIONS: The nature of the mutations in the PDEB gene and their pattern of inheritance indicate that the lack of activity of the phosphodiesterase (PDE), a key enzyme in the visual phototransduction process, account for the RP phenotype in these patients.

3',5'-Cyclic-GMP Phosphodiesterases↗

[Atypical familial microcytosis: a familial and genetic study].

The characteristics of familiar atypical microcytosis studied during one year were evaluated. Out of 149 patients with microcytosis in whom iron deficiency was ruled out, a heterogenous beta-thalassemia was diagnosed in 72 cases, a heterozygous delta beta-thalassemia in 16 cases and a hemoglobinopathy in 3 cases. The microcytosis was related to an inflammatory anemia in 12 cases and to an hemopathy in 9 cases. An atypical microcytosis was detected in 37 patients. A familiar and molecular analysis was carried out to detect alpha-thalassemia in cases with atypical microcytosis. It was possible to complete the familiar and molecular analysis in 35 out of 37 cases, and an alpha-thalassemia was observed in 31 patients. Most cases proved to be heterozygous or homozygous-alpha 3.7-thalassemia. No patient with heterozygous alpha zero-thalassemia was found. Most cases of familiar atypical microcytosis in our country are due to -alpha 3.7-thalassemia. Bearing these findings in mind, this analysis should only be used in situations where a problem of prenatal diagnosis is present. Moreover, systematic molecular analysis of familiar atypical microcytosis could be justified if the MCV is lower than 75 fl.

Adolescent↗