Lurdes Torres
University of São Paulo
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Publication
Featured researches published by Lurdes Torres.
International Journal of Cancer | 2004
Nuno Cerveira; Lurdes Torres; Patrícia Rocha; Susana Bizarro; Deolinda Pereira; Joaquim Abreu; Rui Henrique; Manuel R. Teixeira; Sérgio Castedo
We describe a new one‐step RT‐PCR assay for the detection of the mammaglobin (MGB1) gene transcript in the peripheral blood of breast cancer patients. With this approach, the MGB1 transcript could be detected in the peripheral blood of 22 of 54 (41%) breast cancer patients prior to any therapy. This method, using specific primers for cDNA synthesis, proved to be more sensitive (10−6 to 10−11, usually 10−7) than previously reported methodologies. This increased sensitivity was achieved without compromising specificity, as the MGB1 transcript was not detected in 38 blood samples of healthy donors and in only 1 of 18 blood samples of patients presenting with hematologic malignancies. A positive correlation was seen between MGB1 positivity and breast cancer stage: 0/3 (0%) in stage 0, 3/13 (23%) in stage I, 6/17 (35%) in stage II, 5/10 (50%) in stage III, 8/11 (73%) in stage IV (p = 0.003). The prognostic and therapeutic implications of MGB1 positivity by one‐step RT‐PCR in the peripheral blood of breast cancer patients, especially in clinically localized disease (stages I and II), should be evaluated after long‐term clinical follow‐up of these patients.
Leukemia Research | 2010
Joana Santos; Nuno Cerveira; Susana Bizarro; Franclim R. Ribeiro; Cecília Correia; Lurdes Torres; Susana Lisboa; Joana Vieira; Jose Mario Mariz; Lucília Norton; Simone Snijder; Clemens H.M. Mellink; Arjan Buijs; Lee Yung Shih; Sabine Strehl; Francesca Micci; Sverre Heim; Manuel R. Teixeira
Septins are proteins associated with crucial steps in cell division and cellular integrity. In humans, 14 septin genes have been identified, of which five (SEPT2, SEPT5, SEPT6, SEPT9, and SEPT11) are known to participate in reciprocal translocations with the MLL gene in myeloid neoplasias. We have recently shown a significant down-regulation of both SEPT2 and MLL in myeloid neoplasias with the MLL-SEPT2 fusion gene. In this study, we examined the expression pattern of the other 13 known septin genes in altogether 67 cases of myeloid neoplasia, including three patients with the MLL-SEPT2 fusion gene, four with MLL-SEPT6 fusion, and three patients with the MLL-SEPT9 fusion gene. When compared with normal controls, a statistically significant down-regulation was observed for the expression of both MLL (6.4-fold; p=0.008) and SEPT6 (1.7-fold; p=0.002) in MLL-SEPT6 leukemia. Significant down-regulation of MLL was also found in MLL-MLLT3 leukemias. In addition, there was a trend for SEPT9 down-regulation in MLL-SEPT9 leukemias (4.6-fold; p=0.077). Using hierarchical clustering analysis to compare acute myeloid leukemia genetic subgroups based on their similarity of septin expression changes, we found that MLL-SEPT2 and MLL-SEPT6 neoplasias cluster together apart from the remaining subgroups and that PML-RARA leukemia presents under-expression of most septin family genes.
Genes, Chromosomes and Cancer | 2010
Isabel Veiga; Mara Silva; Joana Vieira; Carla Pinto; Manuela Pinheiro; Lurdes Torres; Marta C. Soares; Lúcio Lara Santos; Hugo Duarte; Artur L. Bastos; Camila Coutinho; José Dinis; Carlos Lopes; Manuel R. Teixeira
Hereditary gastrointestinal stromal tumor (GIST) syndrome is a rare autosomal dominant genetic disorder originated by germline mutations in the KIT or PDGFRA genes. We report the third family with hereditary predisposition to GIST due to the KIT Exon 17 germline mutation p.Asp820Tyr and characterize the cytogenetic progression pathways followed by different GIST sharing the same primary genetic event, using a combination of chromosome banding, comparative genomic hybridization (CGH), and fluorescence in situ hybridization (FISH) analyses. The missense mutation p.Asp820Tyr was detected in the probands rectal and gastric GIST, as well as in his aunts GIST epiplon metastasis. The mutation p.Asp820Tyr was subsequently also found in the probands peripheral blood DNA, as well as in that of 4 of 10 relatives thus far analyzed. CGH analysis revealed loss of 14q and 15q in the probands gastric lesion, whereas FISH analysis of the probands rectal GIST did not detect loss of 14q and 15q, but instead loss of 4q and 22q and gain of 20q, indicating that the two tumors were independent GIST. Chromosome banding and CGH analyses of the aunts GIST epiplon metastasis revealed multiple cytogenetic alterations, including 1p loss, but none in common with the two probands GIST. We conclude that, although the patients share the same KIT Exon 17 germline mutation, the multiple GIST analyzed followed different pathogenetic progression pathways, each of which did not significantly differ from what has been described in sporadic GIST.
Molecular Oncology | 2012
Nuno Cerveira; Susana Lisboa; Cecília Correia; Susana Bizarro; Joana Santos; Lurdes Torres; Joana Vieira; João D. Barros-Silva; Dulcineia Pereira; Claudia Moreira; Claus Meyer; Tereza Oliva; Ilidia Moreira; Ângelo Martins; Luisa Viterbo; Vitor Costa; Rolf Marschalek; Armando Pinto; Jose Mario Mariz; Manuel R. Teixeira
Chromosomal rearrangements affecting the MLL gene are associated with high‐risk pediatric, adult and therapy‐associated acute leukemia. In this study, conventional cytogenetic, fluorescence in situ hybridization, and molecular genetic studies were used to characterize the type and frequency of MLL rearrangements in a consecutive series of 45 Portuguese patients with MLL‐related leukemia treated in a single institution between 1998 and 2011. In the group of patients with acute lymphoblastic leukemia and an identified MLL fusion partner, 47% showed the presence of an MLL–AFF1 fusion, as a result of a t(4;11). In the remaining cases, a MLL–MLLT3 (27%), a MLL–MLLT1 (20%), or MLL–MLLT4 (7%) rearrangement was found. The most frequent rearrangement found in patients with acute myeloid leukemia was the MLL–MLLT3 fusion (42%), followed by MLL–MLLT10 (23%), MLL–MLLT1 (8%), MLL–ELL (8%), MLL–MLLT4 (4%), and MLL–MLLT11 (4%). In three patients, fusions involving MLL and a septin family gene (SEPT2, SEPT6, and SEPT9), were identified. The most frequently identified chromosomal rearrangements were reciprocal translocations, but insertions and deletions, some cryptic, were also observed. In our series, patients with MLL rearrangements were shown to have a poor prognosis, regardless of leukemia subtype. Interestingly, children with 1 year or less showed a statistically significant better overall survival when compared with both older children and adults. The use of a combined strategy in the initial genetic evaluation of acute leukemia patients allowed us to characterize the pattern of MLL rearrangements in our institution, including our previous discovery of two novel MLL fusion partners, the SEPT2 and CT45A2 genes, and a very rare MLL–MLLT4 fusion variant.
Pediatric Blood & Cancer | 2011
Lurdes Torres; Susana Lisboa; Joana Vieira; Nuno Cerveira; Joana Santos; Manuela Pinheiro; Cecília Correia; Susana Bizarro; Marta Almeida; Manuel R. Teixeira
Acute megakaryoblastic leukemia (AMKL) with t(1;22)(p13;q13) is a subset of acute myeloid leukemia (AML) representing <1% of all cases and about 70% of pediatric AMKL in the first year of life. We present a case of a 7‐month‐old female in whom the bone marrow karyotype showed the derivative chromosome der(22)t(1;22)(p13;q13). The RBM15–MKL1 fusion transcript was detected by RT‐PCR and confirmed by sequencing analyses. FISH analyses revealed the presence of the four‐way translocation t(1;22;17;18)(p13;q13;q22;q12). Pediatr Blood Cancer 2011;56:846–849.
Cancer Genetics and Cytogenetics | 2010
Joana Santos; Nuno Cerveira; Cecília Correia; Susana Lisboa; Manuela Pinheiro; Lurdes Torres; Susana Bizarro; Joana Vieira; Luisa Viterbo; Jose Mario Mariz; Manuel R. Teixeira
We present the characterization at the RNA level of an acute myeloid leukemia with a t(11;17)(q23;q25) and a MLL rearrangement demonstrated by FISH. Molecular analysis led to the identification of two coexistent in-frame MLL-SEPT9 fusion transcripts (variants 1 and 2), presumably resulting from alternative splicing. Real-time quantitative RT-PCR analysis showed that the relative expression of the MLL-SEPT9 fusion variant 2 was 1.88 fold higher than the relative expression of MLL-SEPT9 fusion variant 1. This is the first description of a MLL-SEPT9 fusion resulting in coexistence of two alternative splicing variants, each of which previously found isolated in myeloid leukemias.
Molecular Cancer | 2013
Susana Lisboa; Nuno Cerveira; Susana Bizarro; Cecília Correia; Joana Vieira; Lurdes Torres; Jose Mario Mariz; Manuel R. Teixeira
BackgroundNUP98 gene rearrangements have been reported in acute myeloid leukemia, giving rise to fusion proteins that seem to function as aberrant transcription factors, and are thought to be associated with poor prognosis.FindingsA patient with treatment-related acute myeloid leukemia presented a t(3;11)(p11;p15) as the only cytogenetic abnormality. FISH and molecular genetic analyses identified a class 1 homeobox gene, POU1F1, located on chromosome 3p11, as the fusion partner of NUP98. In addition, we have found that the patient harbored an FLT3-ITD mutation, which most likely collaborated with the NUP98-POU1F1 fusion gene in malignant transformation.ConclusionsWe have identified POU1F1 as the NUP98 fusion partner in therapy-related AML with a t(3;11)(p11;p15). This is the first POU family member identified as a fusion partner in human cancer.
BMC Cancer | 2009
Nuno Cerveira; Joana Santos; Susana Bizarro; Vera L. Costa; Franclim R. Ribeiro; Susana Lisboa; Cecília Correia; Lurdes Torres; Joana Vieira; Simone Snijder; Jose Mario Mariz; Lucília Norton; Clemens H.M. Mellink; Arjan Buijs; Manuel R. Teixeira
BackgroundA relevant role of septins in leukemogenesis has been uncovered by their involvement as fusion partners in MLL-related leukemia. Recently, we have established the MLL-SEPT2 gene fusion as the molecular abnormality subjacent to the translocation t(2;11)(q37;q23) in therapy-related acute myeloid leukemia. In this work we quantified MLL and SEPT2 gene expression in 58 acute myeloid leukemia patients selected to represent the major AML genetic subgroups, as well as in all three cases of MLL-SEPT2-associated myeloid neoplasms so far described in the literature.MethodsCytogenetics, fluorescence in situ hybridization (FISH) and molecular studies (RT-PCR, qRT-PCR and qMSP) were used to characterize 58 acute myeloid leukemia patients (AML) at diagnosis selected to represent the major AML genetic subgroups: CBFB-MYH11 (n = 13), PML-RARA (n = 12); RUNX1-RUNX1T1 (n = 12), normal karyotype (n = 11), and MLL gene fusions other than MLL-SEPT2 (n = 10). We also studied all three MLL-SEPT2 myeloid neoplasia cases reported in the literature, namely two AML patients and a t-MDS patient.ResultsWhen compared with normal controls, we found a 12.8-fold reduction of wild-type SEPT2 and MLL-SEPT2 combined expression in cases with the MLL-SEPT2 gene fusion (p = 0.007), which is accompanied by a 12.4-fold down-regulation of wild-type MLL and MLL-SEPT2 combined expression (p = 0.028). The down-regulation of SEPT2 in MLL-SEPT2 myeloid neoplasias was statistically significant when compared with all other leukemia genetic subgroups (including those with other MLL gene fusions). In addition, MLL expression was also down-regulated in the group of MLL fusions other than MLL-SEPT2, when compared with the normal control group (p = 0.023)ConclusionWe found a significant down-regulation of both SEPT2 and MLL in MLL-SEPT2 myeloid neoplasias. In addition, we also found that MLL is under-expressed in AML patients with MLL fusions other than MLL-SEPT2.
Pediatric Blood & Cancer | 2008
Susana Lisboa; Nuno Cerveira; Joana Vieira; Lurdes Torres; Ana Maia Ferreira; Mariana Afonso; Lucília Norton; Rui Henrique; Manuel R. Teixeira
Alveolar rhabdomyosarcoma (ARMS) is characterized by two pathognomonic translocations, both involving the FOXO1 gene. We describe a case of a 10‐year‐old child with multiple lytic lesions involving all the vertebral bodies, sternum and femur and a bone marrow biopsy compatible with a small round cell neoplasia, but no evidence of a primary tumor. Interphase FISH analysis with specific probes evidenced a rearrangement involving the FOXO1 gene and RT‐PCR identified the PAX7‐FOXO1 fusion transcript. These data show a case of ARMS with no evidence of primary tumor presenting the PAX7‐FOXO1 fusion gene. Pediatr Blood Cancer 2008;51:554–557.
Genes, Chromosomes and Cancer | 2016
Maria Cecília de Paula Silva; João D. Barros-Silva; Joana Vieira; Susana Lisboa; Lurdes Torres; Cecília Correia; Márcia Vieira-Coimbra; Ana Teresa Martins; Carmen Jerónimo; Rui Henrique; Paula Paulo; Manuel R. Teixeira
Prostate carcinomas harboring 8q gains are associated with poor clinical outcome, but the target genes of this genomic alteration remain to be unveiled. In this study, we aimed to identify potential 8q target genes associated with clinically aggressive prostate cancer (PCa) using fluorescence in situ hybridization (FISH), genome‐wide mRNA expression, and protein expression analyses. Using FISH, we first characterized the relative copy number of 8q (assessed with MYC flanking probes) of a series of 50 radical prostatectomy specimens, with available global gene expression data and typed for E26 transformation specific (ETS) rearrangements, and then compared the gene expression profile of PCa subsets with and without 8q24 gain using Significance Analysis of Microarrays. In the subset of tumors with ERG fusion genes (ERG+), five genes were identified as significantly overexpressed (false discovery rate [FDR], ≤5%) in tumors with relative 8q24 gain, namely VN1R1, ZNF417, CDON, IKZF2, and NCOA2. Of these, only NCOA2 is located in 8q (8q13.3), showing a statistically higher mRNA expression in the subgroup with relative 8q gain, both in the ERG+ subgroup and in the whole series (P = 0.000152 and P = 0.008, respectively). Combining all the cases with NCOA2 overexpression, either at the mRNA or at the protein level, we identified a group of tumors with NCOA2 copy‐number increase, independently of ETS status and relative 8q24 gain. Furthermore, for the first time, we detected a structural rearrangement involving NCOA2 in PCa. These findings warrant further studies with larger series to evaluate if NCOA2 relative copy‐number gain presents prognostic value independently of the well‐established poor prognosis associated with MYC relative copy‐number gain.