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Alain Latil

Publications and source records attributed to Alain Latil.

15 recordsLinked to original sources

Allelic loss at 16q23.2 is associated with good prognosis in high grade prostate cancer.

PURPOSE: Loss of heterozygosity (LOH) at 16q23.2 is an early and frequent event in prostate cancer. LOH is thought to be involved in tumor development and progression mainly through inactivation of tumor suppressor genes. However, it has been demonstrated that LOH at 16q23.2 is an independent marker of good prognosis in breast cancer. In the present study, we evaluated the clinical relevance of 16q23.2 LOH in prostate cancer, together with other LOH frequently associated with this disease. EXPERIMENTAL DESIGN: Tumoral and normal DNA were extracted from 61 radical prostatectomies, including 30 pT2 tumors with low Gleason score 5,6 (group 1), and 31 pT3 high grade (G8-9) tumors (group 2). Median follow-up after surgery was 42 months. Three patients reccured in group 1, and 20 in group 2. LOH analysis was performed using highly informative microsatellites markers, at 16q23.2, and at other chromosome loci frequently deleted in prostate cancer: 7q31, 8p22, 12p13, 13q14, and 18q21. RESULTS: LOH at 16q23.2 is associated with low stage low grade tumors and lower preoperative PSA, while LOH at 8p22 is more frequent in high stage high grade prostate cancer. In group 2, 16q23.2 LOH was the only predictor of disease-free survival in univariate and multivariate analysis, and the cumulative LOH rate was not higher in patients non-deleted for 16q23.2. CONCLUSION: These results emphasize the interest of 16q23.2 as an independent prognostic factor in high-grade prostate cancer, and suggest that this chromosomal region may contain a gene involved in tumor progression.

Aged↗

Differential expression of 37 selected genes in hormone-refractory prostate cancer using quantitative taqman real-time RT-PCR.

Progression of prostate cancer to androgen independence remains the primary obstacle to improved survival. The development of more effective treatments depends on our understanding of the molecular events associated with the hormone-refractory stage. We quantified, among 90 screened genes, the expression of 37 target genes, using real-time quantitative RT-PCR. Gene expression was studied in 13 samples of HPRC compared to 33 clinically localised cancers and normal prostate tissue. We identify 19 genes with significant differential expression in HRPC compared to localised prostate cancer. Genes with decreased expression included receptors for growth factors, MMR genes and the serine protease hepsin. Analysis of increased gene expression confirmed the importance of AR upregulation and highlighted genes not previously linked to HRPC, including enzymes involved in steroid synthesis and the antiapoptotic factor survivin. Progression of prostate cancer to the hormone-refractory state is associated with differential gene expression, which may prove useful for both understanding disease progression and the development of new therapeutic approaches.

Androgens↗

Extensive analysis of the 7q31 region in human prostate tumors supports TES as the best candidate tumor suppressor gene.

Loss of heterozygosity (LOH) on chromosome arm 7q31 is found in many prostate tumors. Such alterations are generally associated with inactivation of tumor suppressor genes. It has been shown previously that the main region of LOH at 7q31 spans the interval between the D7S486 and D7S2460 microsatellite loci, which contains several candidate tumor suppressor genes (TSG) such as TES, CAV2, CAV1, MET, CAPZA2, ST7 and WNT2. We tested 41 human sporadic prostate tumors for 7q31 LOH by using 5 polymorphic markers overlapping the critical region and used a real-time reverse transcriptase-polymerase chain reaction (RT-PCR) assay to study the expression of the 7 candidate TSGs located in this genomic region. We found that CAV1, CAV2, MET and TES mRNA expression was lower in prostate tumors than in normal prostate tissues. Our immunohistochemical results and previously published data on the compartmental expression of these messenger RNAs in stromal and epithelial cells suggest that TES is the best candidate tumor suppressor gene at 7q31.

Chromosomes, Human, Pair 7↗

Expression in bladder transitional cell carcinoma by real-time quantitative reverse transcription polymerase chain reaction array of 65 genes at the tumor suppressor locus 9q34.1-2: identification of 5 candidates tumor suppressor genes.

Frequent deletions on 9q34.1-2 were reported in bladder transitional cell carcinoma. High deletion mapping studies delimited a critical interval between markers D9S61 and D9S66, which is highly susceptible to contain a tumor suppressor gene. Expression level of the 65 genes localized in this region was analyzed by real-time quantitative RT-PCR, comparing tumor to normal urothelium. Five genes exhibited a significantly reduced expression level: C9orf9, KIAA0625, ABL1, LAMC3 and KIAA1857-netrin-G2, which exhibited the most significant downregulation (p=0.0007). KIAA1857-netrin-G2 belongs to the netrins and might then be a tumor suppressor gene in bladder cancer, as netrin1 receptor DCC has been implicated in tumorigenesis.

Carcinoma, Transitional Cell↗

Molecular profiling of benign prostatic hyperplasia using a large scale real-time reverse transcriptase-polymerase chain reaction approach.

PURPOSE: Benign prostatic hyperplasia (BPH) is characterized by a hyperplastic growth of epithelial and stromal cells in the prostate. Despite the high prevalence of the disease little is known regarding the molecular etiology of BPH. Therefore, a comparison of gene expression patterns between normal prostate, BPH and prostate cancer could provide insights into the pathogenic mechanisms of the disease and identify candidate genes that could be targeted for therapeutic use. MATERIALS AND METHODS: Prostate tissue specimen were obtained from 30 patients undergoing adenomectomy for BPH. Adenoma weight was less than 60 gm in 15 patients and more than 60 gm in the remainder. Normal prostate tissue was obtained from 15 patients undergoing radical prostatectomy for cancer from areas selected for absent tumor and BPH. Two pools of organ confined prostate cancer were also analyzed. We quantified in the 5 pools of tissues the expression of 327 genes using real-time quantitative reverse transcriptase-polymerase chain reaction. RESULTS: A total of 23 genes showed increased expression in BPH with a fold change of at least 2.5 between normal prostate and the 2 BPH groups, of which most were normal or down-regulated in prostate cancer. Seven genes showed decreased expression in BPH with a fold change of at least 3.5 between normal prostate and BPH. Most of them were also normal or down-regulated in prostate cancer. CONCLUSIONS: We identified a set of genes up-regulated in BPH compared to normal prostate tissue and often prostate cancer, including genes previously implicated in BPH and others not previously linked to this disease to our knowledge. Further investigations are now warranted to determine the clinical relevance and therapeutic potential of these genes.

Aged↗

Gene expression profiling in clinically localized prostate cancer: a four-gene expression model predicts clinical behavior.

PURPOSE: New diagnostic and prognostic molecular markers are required for prostate cancer, one of the most common male malignancies in Western countries. Gene expression profiling may help to identify genes involved in prostate carcinogenesis, yield clinical biomarkers, and improve tumor classification. EXPERIMENTAL DESIGN: To identify fundamental differences between normal and neoplastic prostate tissue, we used real-time quantitative RT-PCR assays to quantify the mRNA expression of 291 selected genes in samples of normal prostate and of well-documented primary, clinically localized prostate tumors. RESULTS: Forty-six genes showed significantly different expression in tumors relative to normal prostate. The dysregulated genes belong notably to the extracellular membrane and extracellular membrane remodeling categories and are involved in angiogenesis. Furthermore, we obtained a four-gene (XLKD1/LYVE1, CGA, F2R/PAR1, and BCL-G) model that discriminated between the seven patients with and the seven patients without relapse, independently of stage and grade. CONCLUSIONS: Some dysregulated genes are good candidates for use as molecular markers and/or therapeutic targets. Furthermore, differential gene expression profiling of clinically localized prostate tumors from relapsing and nonrelapsing patients identified a set of four genes with a pattern of expression that defines a molecular signature that could predict the clinical behavior of this disease.

Aged↗

Extensive analysis of the 13q14 region in human prostate tumors: DNA analysis and quantitative expression of genes lying in the interval of deletion.

BACKGROUND: Loss of heterozygosity (LOH) on chromosome arm 13q14 is one of the most consistent genetic alterations in sporadic prostate cancer. This alteration may be involved in prostate oncogenesis through inactivation of one or more tumor suppressor genes (TSGs). Candidate gene expression is an approach to focus the search for TSGs in this region. METHODS: We tested 41 human sporadic prostate tumors for 13q14 LOH by using seven polymorphic markers overlapping the critical region and used a real-time quantitative RT-PCR assay to study the same tumors for expression of the 31 genes located in this genomic region (localized by the Human Genome Project Working Draft). RESULTS: Allelic loss on at least one locus was found in 18 (41%) of the 41 tumor DNAs. Only four genes (ITM2B, CHC1L, KIAA0970, and LOC51131), located in the region most frequently deleted in prostate carcinoma, showed a significant difference in expression between normal and neoplastic prostate tissues. CONCLUSIONS: Given their location in the LOH hotspot, as indicated by our genomic analysis, ITM2B, CHC1L, KIAA0970, and LOC51131 are candidate tumor suppressor genes in this region. ITM2B that showed a significant association (P < 0.005) between expression and LOH at the corresponding locus could, furthermore, be the main target of the observed LOH at 13q in prostate tumors.

Adenocarcinoma↗

Quantification of expression of netrins, slits and their receptors in human prostate tumors.

Recently, DCC (Deleted in Colorectal Cancer) protein has been forwarded as a receptor for netrin. The Netrin/DCC complex is critical for axon guidance and cell migration. In the developing nervous system, netrin protein secreted by midline cells attracts commissural axons by activating the DCC receptor on growth cones. This attraction can be switched to repulsion or silenced completely, depending on the DCC binding partner. The potential suppressor function of DCC in prostate tumorigenesis, through a still unknown mechanism, prompted us to quantify the expression of several genes involved in this axon guidance pathway. The relative expression levels of DCC, NEO1, NTN1, NTN2L, NTN4, UNC5C, Slit1, Slit2, Slit3, Robo1 and Robo2 were simultaneous quantified in 48 tumors and 7 normal prostate tissues by using real-time quantitative reverse transcriptase-polymerase chain reaction (RT-PCR). A reduction in DCC, NEO1, NTN1 and NTN4 expression was observed in prostate tumors, while many of the same prostate tumors over-expressed either Slit genes or their receptors, Robo.

Adenocarcinoma↗

Association study of polymorphisms in the human estrogen receptor alpha gene and prostate cancer risk.

OBJECTIVES: Prostate cancer is a very common hormone-related malignancy in Western countries. It is initially dependent on androgen stimulation but in vitro growth of prostate cancer cells are also dependent on estrogen. Our goal was to elucidate if some polymorphisms of estrogen receptor alpha gene might be associated with the risk of prostate cancer. METHODS: Using DHPLC techniques, each coding exon of the estrogen receptor alpha gene was screened for new polymorphisms in germline DNA from 96 healthy controls and 96 sporadic prostate cancer cases. Identified polymorphisms were then genotyped and their distribution compared between the two populations. RESULTS: Thirteen polymorphisms were identified. A difference was found in the distribution of one newly identified polymorphism, namely a GGGA repeat located in the first intron of the gene. The common wild type genotype consisted of two alleles with five GGGA repetitions (5/5 genotype). Indeed this 5/5 genotype was found in 294/296 controls (99.3%) and 285/294 patients (96.9%; OR, 4.6; 95% CI, 0.99-21.67). Among the nine patients with a different genotype, one was 4/5, seven were 5/6 and one was 6/6. CONCLUSION: These results suggest that variants of the GGGA polymorphism from the estrogen receptor alpha gene may be associated with an increased risk of developing prostate cancer.

Adult↗

Allelic losses in localized prostate cancer: association with prognostic factors.

PURPOSE: Loss of heterozygosity (LOH) is the most consistent genetic alteration in prostate cancer (CaP), frequently associated with advanced cancer and metastasis. We performed LOH analysis on 6 chromosomal regions of interest in localized CaP to obtain an overview of allelic losses in organ confined tumors and test the association with the usual prognostic factors. MATERIALS AND METHODS: Tumoral and normal DNA were extracted from 48 radical prostatectomy specimens (all organ confined) with a Gleason score of 5 to 7. Biological and pathological data, such as prostate specific antigen (PSA), Gleason score and perineural invasion (PNI), were correlated with allelic losses at 7q31, 8p22, 12p13, 13q14, 16q23.2 and 18q21. Analysis was done by genotyping using highly informative microsatellites markers. RESULTS: The rate of LOH was 25% for chromosomes 13 and 18, and between 40% and 47% for chromosomes 7, 8, 12 and 16. The mean frequency of overall LOH events was less than 34%. Except for the 12p13 and 16q23.2 loci no significant correlation was found between LOH and PSA or Gleason score. PNI was significantly associated with LOH on 8p22 (p = 0.003) and with a high frequency of LOH events (greater than 34%) (p = 0.02). CONCLUSIONS: The frequency of allelic losses in localized and differentiated CaP is associated with PNI but not with the usual prognostic markers, such as PSA and Gleason score. The relationship between LOH on 8p22 and PNI suggests the presence on this region of a gene involved in epithelium/nerve interaction.

Humans↗

Down-regulation of (IIIb) and (IIIc) isoforms of fibroblast growth factor receptor 2 (FGFR2) is associated with malignant progression in human prostate.

BACKGROUND: Fibroblast growth factors (FGFs) and their receptors (FGFRs) have a critical function in the cellular stroma/epithelium interaction for the development and homeostasis of human prostate. Imbalance in expression of these factors is associated with malignancy in several cancers. METHODS: To quantify the expression of fibroblast growth factor receptor isoforms FGFR2(IIIb), FGFR2(IIIc), FGFR1(IIIc), and fibroblast growth factors FGF2 and FGF7 in normal and tumoral human prostate tissues, and human prostatic epithelial cell lines, we used quantitative real-time polymerase chain reaction. RESULTS: The expression of FGFR2(IIIb) mRNA is down-regulated in 60% of the tumors studied (P < 0.0001). Furthermore, FGFR2(IIIb) is significantly reduced in androgen-independent tumors (AI) compared with androgen-responsive tumors (AD) (P = 0.02). A significant reduction in FGFR2(IIIc) expression is also observed in 80% of tumors (P = 0.001). However, unlike FGFR2(IIIb), the down-regulation of FGFR2(IIIc) is not related to the androgen-independent status (P = 0.09). On the other hand, neither FGFR1(IIIc) nor FGF2 and FGF7 have shown any significant variation in expression between normal and cancerous specimens. CONCLUSIONS: These findings propose that decreased expression of not only FGFR2(IIIb) but also FGFR2(IIIc) isoforms may be a critical step in prostate cancer progression and furthermore suggest that FGFR2(IIIb) expression could be used as a marker for prostate cancer evolution from androgen-dependent to androgen-independent status.

Cell Line↗

CHC1-L, a candidate gene for prostate carcinogenesis at 13q14.2, is frequently affected by loss of heterozygosity and underexpressed in human prostate cancer.

Loss of heterozygosity (LOH) at chromosome 13q14 is one of the most recurrent anomalies observed in sporadic prostate tumors. This LOH is believed to unmask recessive mutations that inactivate a tumor-suppressor gene(s) which otherwise regulates normal cell growth and suppresses abnormal cell proliferation. Identification of potential tumor-suppressor genes within the deleted region is a way of indicating putative pathways of prostate cancer development and progression. The main target that disappears or is downregulated as a result of 13q14 loss remains to be identified. Therefore, our first concern was to find a gene located in the 13q14 region whose transcription is reduced. CHC1-L, for chromosome condensation 1-like, is mapped to the smallest common deleted region. CHC1-L expression is significantly reduced in prostate tumors compared to normal prostate tissues (p = 0.0002). In 21 of 36 (58%) primary prostate tumors studied, CHC1-L expression was reduced at least 2-fold, as measured by real-time quantitative RT-PCR; 18 of the tumors (50%) showed 13q14 LOH for at least 1 of the 5 polymorphic markers that we studied in the region, and 14 (78%) of these were among the tumors underexpressing CHC1-L. CHC1-L is alternatively spliced at its 5' end to produce 2 isoforms, of 551 and 526 aa. Analyses of CHC1-L integrity and of the quantitative expression of its variants indicate that the observed underexpression in prostate tumors is related to reduced expression of the 551 aa isoform. Although CHC1-L is not the obvious candidate given its only known homology, to RCC1, a guanine nucleotide exchange factor for the Ras-related GTPase Ran, the frequent significant decrease observed in its expression in prostate cancer associated with the difference in frequency of CHC1-L variant isoforms between normal and neoplastic prostate tissues places it in a pivotal role or possibly adjacent to a gene that has that role in prostate cancer evolution.

Alleles↗

CGA gene (coding for the alpha subunit of glycoprotein hormones) overexpression in ER alpha-positive prostate tumors.

OBJECTIVE: The precise role of estrogen, estrogen receptor (ER) and ER-responsive genes in prostate carcinogenesis is unclear. Paradoxically, estrogens and antiestrogens are used in the treatment of advanced metastatic prostate cancers. Recently, we identified CGA gene coding for the alpha subunit of glycoprotein hormones as a new ER alpha-responsive gene in human breast cancer cells. The aim of this study was to explore the role of CGA in the second major hormone-related cancer, i.e. prostate cancer. PATIENTS AND METHODS: We quantified CGA mRNA in nine cases of benign prostatic hyperplasia (BPH) and 23 sporadic prostate tumors (TP) by using a real-time quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) assay. RESULTS: CGA overexpression (> 10 S.D. above the mean in normal prostate tissues (NP)) was observed in 39% of the TP (ranging from 4.4 to 174.5 times the level in NP) and in none of the BPH samples. CGA overexpression was not accompanied by overexpression of the CGB, LHB, TSHB or FSHB genes to produce ectopic glycoprotein hormones. CGA gene overexpression correlated with ER alpha normal expression (P = 0.016), but not with ER beta or androgen receptor (AR) expression status. CONCLUSION: These results point to CGA gene as a member of a novel dysregulated pathway in prostate cancer. CGA should therefore be considered for investigation as possible novel molecular marker in clinical applications and as possible new potential therapeutic target.

Breast Neoplasms↗

Impact of constitutional genetic variation in androgen/oestrogen-regulating genes on age-related changes in human prostate.

OBJECTIVE: Benign prostatic hyperplasia (BPH) is the most common benign tumour in ageing men. While the etiopathology remains unsolved, a disruption in the endocrine/autocrine-paracrine prostatic homeostasis, involving steroid hormones, contributes to the pathogenesis of BPH. DNA polymorphisms in genes involved in hormone synthesis, signalling and metabolism may, therefore, be responsible for these changes. We have evaluated the correlation between specific genotypes in androgen- and oestrogen-regulating genes (AR, SRD5A2, CYP17 and CYP19), and age-related prostatic changes. METHODS: We have tested genetic susceptibility to morphological and pathological criteria in 195 French Caucasians, using allelic variants for candidate genes involved in androgen/oestrogen prostatic activity: androgen receptor (CAG repeats), 5alpha-reductase type 2 (TA repeats, V89L and A49T mutations), A2 variant of the 17alpha-hydroxylase (CYP17) and the simple tandem repeat polymorphism (STRP) aromatase (CYP19) polymorphisms. RESULTS: The A2 variant of 17alpha-hydroxylase (CYP17) and allele 191 of STRP aromatase (CYP19) showed an opposite effect on age-related prostate hyperplasia: CYP17 being associated with increased risk of prostate enlargement and CYP19 with reduced risk. The 5alpha-reductase type II variants studied did not show links with prostate hyperplasia. The androgen receptor gene CAG repeat length showed a low correlation with the increase of prostate weight, suggesting some effect on age-related prostate growth. CONCLUSION: These results suggested that common variants of the CYP17 gene are associated with prostate enlargement and therefore may increase the risk of development of BPH in this population, while infrequent variants of the aromatase gene (CYP19) could be of a protective nature.

Androgens↗

High frequency of allelic losses in high-grade prostate cancer is associated with biochemical progression after radical prostatectomy.

Loss of heterozygosity (LOH) is the most consistent genetic change in prostate cancer (CaP). We aimed, to correlate specific LOH and the overall LOH frequency, to disease progression after radical prostatectomy (RP) in high-grade CaP. Between January 1990 through December 1998, 126 patients who underwent RP (cT1-T2), Gleason 8-10, were pT3, or pN1, or SM(+) (surgical margins). Nine were lost of follow-up, 39/117 (33%) had no biochemical progression (mean follow-up: 45 months). After exclusion for preoperative PSA >50 ng/mL, a case-control study was designed by matching 26 of these cases with 26 similar patients without biochemical progression (criteria: pT, pN, year of surgery). Using microsatellite markers, LOH were assessed on six chromosomal regions (7q31, 8p22, 12p13, 13q14, 16q23.2, 18q21). No prognostic value was associated with LOH at any one specific locus. However, the overall LOH frequency (five classes, cutoff of 60%), was significantly higher if progression (P = 0.02; P = 0.03) in SM(+) patients, and was near statistical significance (P = 0.08; P = 0.07) for the overall case-control population. In multivariate analysis (overall population), the overall LOH rate > or =60% was independently associated with progression [P = 0.035; Odds Ratio (OR) = 5.54]. An overall LOH rate > or =60% predicted poor outcome in 85% of SM(+) patients and 69% of the whole population. Our results suggest that the overall rate of LOH at chromosomal "hot spots" is more likely to be predictive of recurrence than the presence of LOH at any one particular locus. Moreover, the identification of a threshold of LOH could help in predicting patients with poor outcome who may be candidates for local or systemic adjuvant therapies.

Aged↗