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Biomedical subjects

Paul J Goodfellow

Publications and source records attributed to Paul J Goodfellow.

At least 19 recordsLinked to original sources

Evidence for heritable predisposition to epigenetic silencing of MLH1.

Epigenetic silencing of MLH1 is the most common cause of defective DNA mismatch repair in endometrial and colorectal cancers. We hypothesized that variation in the MLH1 gene might contribute to the risk for MLH1 methylation and epigenetic silencing. We undertook a case-control study to test for the association between MLH1 variants and abnormal MLH1 methylation. Eight MLH1 SNPs were typed in the normal DNA from women with endometrial carcinoma. For these studies, the cases were women whose cancers exhibited MLH1 methylation (N = 98) and the controls were women whose cancers had no MLH1 methylation (N = 219). One MLH1 SNP, rs1800734, located in the MLH1 CpG island at -93 from the translation start site, was significantly associated with MLH1 methylation as were age at diagnosis and patient body mass index. In validation experiments, a similar-sized cohort of colorectal carcinoma patients (N = 387) showed a similar degree of association with the -93 SNP; a smaller cohort of endometrial carcinomas (N = 181) showed no association. Combining all 3 cohorts showed an odds ratio of 1.61 (95% CI: 1.20-2.16) for the AA or AG vs. GG genotype at the -93 SNP. Identification of risk alleles for MLH1 methylation could shed light on mechanisms of epigenetic silencing and may ultimately lead to new approaches to the prevention or treatment of malignancies associated with MLH1 inactivation.

Adaptor Proteins, Signal Transducing↗

Body mass index: relationship to clinical, pathologic and features of microsatellite instability in endometrial cancer.

OBJECTIVES: There is a well known association between obesity and endometrial cancer. We sought to examine the relationships between body mass index (BMI), as a measure of obesity, and known demographic, clinical, and molecular characteristics of microsatellite instability and MLH1 promoter methylation in a cohort of patients with endometrial cancer. METHODS: Corpus cancer specimens were prospectively obtained from 473 consecutively enrolled patients between 1992 and 2004. Clinical and pathologic data were extracted from review of the medical record. Microsatellite instability (MSI) was evaluated in all tumors, and methylation of the MLH1 promoter was determined for MSI positive tumors. RESULTS: The median (SD) age and BMI were 64.8 years (11.9) and 33.5 (9.4), respectively. Histology included 376 endometrioid (79%), 69 serous/clear cell or mixed (15%), and 28 sarcomas (6%). Median BMI was 32.4 for endometrioid, 31.0 for serous/clear cell or mixed, and 27.8 for sarcomas (p=0.14). BMI was negatively associated with age at surgery (p<0.01). The remainder of analyses excluded sarcoma histology. BMI was associated with stage of disease; patients with stage I/II disease had significantly higher BMI than those with stage III/IV disease (32.6 vs. 30.6; p=0.02). In relation to molecular features of endometrial cancer, BMI was significantly different between MSI positive tumors compared to MSI negative tumors (30.3 vs. 32.7; p=0.02). MSI was also significantly different between tumor histology, occurring with a higher frequency in Type I than Type II tumors (p<0.01). CONCLUSIONS: The majority of endometrial cancer patients are obese. Those with higher BMI are more likely to be younger, present with early stage disease, and have MSI negative tumors.

Adaptor Proteins, Signal Transducing↗

Transcriptional profiling endometrial carcinomas microdissected from DES-treated mice identifies changes in gene expression associated with estrogenic tumor promotion.

Exposure to unopposed estrogen is a potent risk factor for developing human endometrial cancer. However, little is known about the transcriptional changes elicited by estrogens in endometrial carcinogenesis, in part, because of genetic and environmental heterogeneity of human tumors. We have begun to chart the expression signatures of endometrial tumors promoted with the synthetic estrogen, diethylstilbestrol (DES), in inbred mice. As expected, laser-capture-microdissected endometrial cancers from DES-treated mice displayed a large number of transcriptional changes when compared to uninvolved endometrial epithelium. Genes differentially expressed in carcinomas included cell adhesion and extracellular matrix genes (Decorin as 1 example), developmental genes (Hoxa11), and cytokine signaling genes (Socs3). The DES-promoted carcinomas appeared to fall into 2 distinct transcriptional classes, and expression of the tumor suppressor Pten was among the top discriminators between the 2 cancer groups. Pten was down regulated in the majority of the DES-promoted carcinomas, which is analogous to the frequent loss of PTEN expression in human endometrial tumors. Although preliminary, these observations suggest that the cancers that arise in the DES model bear similarities to human endometrial cancers and provide insights into transcriptional alterations that accompany estrogen-driven endometrial carcinogenesis.

Animals↗

DNA repair pathway profiling and microsatellite instability in colorectal cancer.

BACKGROUND: The ability to maintain DNA integrity is a critical cellular function. DNA repair is conducted by distinct pathways of genes, many of which are thought to be altered in colorectal cancer. However, there has been little characterization of these pathways in colorectal cancer. METHOD: By using the TaqMan real-time quantitative PCR, RNA expression profiling of 20 DNA repair pathway genes was done in matched tumor and normal tissues from 52 patients with Dukes' C colorectal cancer. RESULTS: The relative mRNA expression level across the 20 DNA repair pathway genes varied considerably, and the individual variability was also quite large, with an 85.4 median fold change in the tumor tissue genes and a 127.2 median fold change in the normal tissue genes. Tumor-normal differential expression was found in 13 of 20 DNA repair pathway genes (only XPA had a lower RNA level in the tumor samples; the other 12 genes had significantly higher tumor levels, all P<0.01). Coordinated expression of ERCC6, HMG1, MSH2, and POLB (RS>or=0.60) was observed in the tumor tissues (all P<0.001). Apoptosis index was not correlated with expression of the 20 DNA repair pathway genes. MLH1 and XRCC1 RNA expression was correlated with microsatellite instability status (P=0.045 and 0.020, respectively). An inverse correlation was found between tumor MLH1 RNA expression and MLH1 DNA methylation (P=0.003). CONCLUSION: Our study provides an initial characterization of the DNA repair pathways for understanding the cellular DNA damage/repair system in human colorectal cancer.

Adaptor Proteins, Signal Transducing↗

MLH3 mutation in endometrial cancer.

MLH3 is a recently described member of the DNA mismatch repair gene family. Based on its interaction with the MutL homologue MLH1, it was postulated that MLH3 might play a role in tumorigenesis. Germ line and somatic mutations in MLH3 have been identified in a small fraction of colorectal cancers, but the role of MLH3 in colorectal cancer tumorigenesis remains controversial. We investigated MLH3's role in endometrial tumorigenesis through analysis of tumor and germ line DNA from 57 endometrial cancer patients who were at increased risk for having inherited cancer susceptibility. Patients with known MSH2 or MSH6 mutations were excluded as well as those who had MLH1-methylated tumors. Sixteen different variants were identified by single-strand conformational variant analysis. Of the 12 missense changes identified, three were somatic mutations. One patient had a germ line missense variant and loss of heterozygosity (LOH) in her tumor specimen. There was no evidence of MLH3 promoter methylation based on combined bisulfite restriction analysis. The identification of inherited missense variants, somatic missense mutations (present in 3 of 57 tumors), and LOH in the tumor from a patient with a germ line missense change suggest a role for MLH3 in endometrial tumorigenesis.

Base Sequence↗

DNA mismatch repair and TP53 defects are early events in uterine carcinosarcoma tumorigenesis.

Growing molecular evidence shows that uterine carcinosarcomas are clonal tumors. The carcinoma component has a dominant effect in the aggressive clinical behavior of these tumors. Defective DNA mismatch repair affects up to 30% of endometrial adenocarcinomas. The frequency and importance of defective DNA mismatch repair in the histiogenesis of uterine carcinosarcomas remains controversial. We studied the pattern and frequency of defective DNA mismatch repair and TP53 alterations in the epithelial and mesenchymal components of 28 uterine carcinosarcomas. We found evidence of defective DNA mismatch repair in six cases (21%) with a concordance rate of 83% for carcinoma-sarcoma pairs (kappa=0.887, P<0.001). Lack of immunostaining for the MLH1 protein was demonstrated in both components in two of these tumors. TP53 defects were evaluated by 17p deletion analysis and p53 immunostaining. Nineteen carcinoma (68%) and 18 sarcoma (64%) components had evidence of either TP53 allelic loss or p53 overexpression. These defects proved clonal in 76% of cases (kappa=0.602, P=0.003). Our results indicate that defective DNA mismatch repair and TP53 defects are common early events in carcinosarcoma tumorigenesis. The high rate of concordance for these molecular defects between the carcinoma and sarcoma components adds to existing molecular evidence that carcinosarcomas are clonal malignancies.

Adaptor Proteins, Signal Transducing↗

Defective DNA mismatch repair and XRCC2 mutation in uterine carcinosarcomas.

OBJECTIVES: A frameshift mutation in the double-strand breakage repair gene XRCC2 was identified in a mismatch repair (MMR) deficient cell line derived from a uterine carcinosarcoma. The frameshift mutation occurred in a mononucleotide run (poly-T tract), a target for strand-slippage mutation in MMR deficient tumors. We sought to determine if XRCC2 mutation is important to uterine carcinosarcoma tumorigenesis and whether the XRCC2 poly-T tract is a target for mutation in cells lacking MMR. METHODS: MSI-typing was used to assess the MMR status of 30 primary carcinosarcomas. The entire XRCC2 coding region was sequenced in all tumors. Single strand conformational variant (SSCV) analysis was used to screen for poly-T tract mutation in 50 endometrioid adenocarcinomas with defective MMR. RESULTS: Seven of 30 (23.3%) primary carcinosarcomas had an MSI-H phenotype. No XRCC2 coding mutations were identified in the 30 carcinosarcomas, and only one of the fifty MSI-H endometrioid adenocarcinomas had an XRCC2 poly-T tract mutation. CONCLUSIONS: Despite the high frequency of mismatch repair deficiency in carcinosarcomas, no XRCC2 poly-T tract frameshift mutations were identified in these tumors. The fact that only one of 50 additional MSI-H tumors had a frameshift mutation suggests that the XRCC2 poly-T tract is not a frequent target for defective MMR. The absence of coding sequence mutations in primary carcinosarcomas suggests that XRCC2 defects are unlikely to play a significant role in carcinosarcoma tumorigenesis.

Base Pair Mismatch↗

Diethylstilbestrol effects and lymphomagenesis in Mlh1-deficient mice.

Inherited defects in DNA mismatch repair (MMR) predispose to a variety of malignancies in humans and in mouse knockout models. In humans, hemizygosity for one of several DNA MMR genes greatly increases an individual's risk for colon and endometrial carcinoma. Hemizygous mice develop gastrointestinal tumors at a low to moderate frequency. Homozygous nulls have higher rates of gastrointestinal tumors and are particularly susceptible to lymphoma. In an effort to model endometrial carcinoma associated with mutation in MMR, we treated mice carrying knockout alleles for Mlh1 or Msh2 with the synthetic estrogen diethylstilbestrol (DES), a known promoter of uterine endometrial carcinoma. The C57BL/6 mice carrying DNA MMR mutations failed to develop endometrial carcinomas. However, the Mlh1-deficient mice treated with DES tended to become moribund at an early age and had very early onset of lymphoma. Comparison of DES-treated and untreated Mlh1-/- animals suggests the combination of Mlh1 deficiency and DES exposure accelerates lymphomagenesis.

Adaptor Proteins, Signal Transducing↗

A Drosophila model of multiple endocrine neoplasia type 2.

Dominant mutations in the Ret receptor tyrosine kinase lead to the familial cancer syndrome multiple endocrine neoplasia type 2 (MEN2). Mammalian tissue culture studies suggest that RetMEN2 mutations significantly alter Ret-signaling properties, but the precise mechanisms by which RetMEN2 promotes tumorigenesis remain poorly understood. To determine the signal transduction pathways required for RetMEN2 activity, we analyzed analogous mutations in the Drosophila Ret ortholog dRet. Overexpressed dRetMEN2 isoforms targeted to the developing retina led to aberrant cell proliferation, inappropriate cell fate specification, and excessive Ras pathway activation. Genetic analysis indicated that dRetMEN2 acts through the Ras-ERK, Src, and Jun kinase pathways. A genetic screen for mutations that dominantly suppress or enhance dRetMEN2 phenotypes identified new genes that are required for the phenotypic outcomes of dRetMEN2 activity. Finally, we identified human orthologs for many of these genes and examined their status in human tumors. Two of these loci showed loss of heterozygosity (LOH) within both sporadic and MEN2-associated pheochromocytomas, suggesting that they may contribute to Ret-dependent oncogenesis.

Amino Acid Sequence↗

Low allele frequency of MLH1 D132H in American colorectal and endometrial cancer patients.

PURPOSE: Hereditary nonpolyposis colon cancer is caused by mutations in DNA mismatch repair genes, predominantly MLH1 and MSH2. Classic MLH1 mutations cause an approximately 20-fold increase in colorectal cancer susceptibility. Recently, we identified a hypomorphic allele, MLH1 D132H , which impairs, but does not completely eliminate the function of MLH1 in tumor suppression. MLH1 D132H confers an approximately fivefold increase in colorectal cancer susceptibility and was first described in a cohort of Israeli colorectal cancer patients, with an estimated allele frequency of 1.3 percent. Because MLH1 D132H has only recently been described, the ethnic distribution of this risk allele is not well understood. This study was undertaken to determine both the frequencies of this risk allele in ethnic groups outside of Israel and whether families harboring this mutation have susceptibility to extracolonic cancers in the hereditary nonpolyposis colon cancer spectrum. METHODS: We genotyped two independent cohorts: 629 population-based colorectal cancer patients ascertained from clinics in Orange, Imperial, and San Diego Counties, and 515 endometrial cancer patients ascertained from gynecologic oncology clinics in the Midwestern United States. RESULTS: MLH1 D132H was not detected in either study cohort, which together totaled more than 1,100 American colorectal cancer and endometrial cancer patients. CONCLUSIONS: The MLH1 D132H risk variant has significantly lower allele frequency in American compared with Israeli cancer patients and, alone, is unlikely to explain significant amounts of American sporadic colorectal cancer or uterine cancer susceptibility. Genetic testing for the MLH1 D132H allele exclusively is therefore unlikely to be cost effective for genetic risk assessment in American population-based and clinic-based colorectal cancer and endometrial cancer patients.

Adaptor Proteins, Signal Transducing↗

IGSF4 promoter methylation and expression silencing in human cervical cancer.

OBJECTIVES: Functional assays of tumor suppression and loss of heterozygosity point to a tumor suppressor gene (TSG) for cervical cancer (CC) on chromosome 11q23. We evaluated IGSF4, a putative TSG located in the region, for promoter methylation and gene silencing in CC cell lines and cervical tissues. METHODS: IGSF4 expression was detected by both RT-PCR and Northern blot analysis. Methylation maps of the IGSF4 promoter region were generated for 11 CC cell lines based upon bisulfite-genomic sequencing, using seven nested-PCR primer sets covering 97 CpG sites. Methylation fingerprints in primary cervical tissues were evaluated by denaturing high performance liquid chromatography. RESULTS: A 4.4-kb mRNA was seen in cell lines, consistent with the RT-PCR results for both cell lines and primary cervical tissue. IGSF4 was expressed in 6/11 cell lines, 6/8 CC tissues and in all seven normal cervical epithelia. In the cell lines, IGSF4 silencing was associated with promoter hypermethylation. The methylation status in the region covering the -18 to -2 CpG sites correlated most strongly with expression, pointing to the existence of an unmethylated core in the IGSF4 promoter in cell lines expressing IGSF4. This unmethylated core spans approximately 180 bp and is immediately upstream of the ATG site. In primary tissues, methylation was detected in 15/23 (65%) CC specimens but in none of seven normal cervical epithelia. CONCLUSIONS: Our data strongly suggest that IGSF4 is a TSG and that gene silencing by aberrant hypermethylation may contribute to the development of CC.

Cell Adhesion Molecule-1↗

Expression mapping at 12p12-13 in advanced prostate carcinoma.

We have previously mapped a putative prostate cancer tumor-suppressor gene to a 1-2 Mb region of 12p12-13. Initial work to identify the tumor suppressor at this locus focused on candidates previously implicated in malignancy; however, mutational and methylation analyses failed to identify significant genomic events. An alternative approach is to use expression analysis to prioritize the genes within the region of interest. This experimental design is based on the hypothesis that tumor-suppressor genes demonstrate decreased expression in tumors compared to normals. Herein, we narrow the region of interest using deletion mapping data and employ expression analysis to prioritize the genes in the minimal deleted region. Highly informative polymorphic markers spanning our region were used to assess for loss of heterozygosity in 99 tumor and normal DNA pairs. The minimal region of deletion was determined to be approximately 500 kb bounded by D12S391 and A002Q26. Publically available databases place 7 genes within this minimal deletion region. An additional 3 genes lie just outside this minimal deletion region and could possibly be inactivated by deletion of promoter, 3'-untranslated region sequences or alternative splice variants. Relative levels of expression of these 10 candidate genes were determined in 6 normal prostates, 5 local prostate tumors, 9 prostate lymph node metastases, 6 prostate cancer cell lines and 12 prostate cancer xenografts using quantitative RT-PCR. DUSP16, FLJ10298 and BCLG were significantly downregulated in both clinical tumors and cultured prostate cancer tissue, indicating that one or all may be critical to initiation or progression of prostate carcinoma.

Animals↗

Penetrance and expressivity of MSH6 germline mutations in seven kindreds not ascertained by family history.

Hereditary nonpolyposis colorectal cancer (HNPCC) is caused by inherited mutations in DNA mismatch-repair genes, most commonly MLH1 or MSH2. The role MSH6 plays in inherited cancer susceptibility is less well defined. The aim of this study was to investigate the penetrance and expressivity of MSH6 mutations in kindreds ascertained through endometrial cancer probands unselected for family history. Detailed pedigrees were constructed for six MSH6 mutation carriers. All reported cancers and precancers were confirmed, and tissues were obtained when available. Tumors were analyzed for microsatellite instability (MSI) and for expression of MSH2, MLH1, and MSH6. MSH6 mutation status was determined for 59 family members. Of these 59 individuals, 19 (32%) had confirmed cancers and precancers. There was an excess of mutation carriers among the 19 affected family members (11 [58%] of 19) compared with those among the 40 unaffecteds (8 [20%] of 40, P=.0065, odds ratio = 5.5, 95% CI = 1.66-18.19). In four of the seven tumors analyzed from mutation carriers other than the probands, MSI and/or MMR protein expression was consistent with the involvement of MSH6. Overall estimated penetrance of the MHS6 mutations was 57.7%. Of the tumors in mutation carriers, 78% were part of the extended HNPCC spectrum. This study demonstrates that MSH6 germline mutations are, indeed, associated with increased cancer risk and that the penetrance of mutations may be higher than appreciated elsewhere. A combination of MSI and immunohistochemistry analyses may be helpful in screening for MSH6 mutation carriers.

Adaptor Proteins, Signal Transducing↗

Increased risk for hereditary nonpolyposis colorectal cancer-associated synchronous and metachronous malignancies in patients with microsatellite instability-positive endometrial carcinoma lacking MLH1 promoter methylation.

PURPOSE: The aim of this study was to evaluate number and types of synchronous and metachronous malignancies in patients with endometrial carcinoma with and without microsatellite instability (MSI). EXPERIMENTAL DESIGN: From a series of 413 endometrial cancer patients, we identified 94 patients with MSI-positive (MSI+) cancers and grouped them by tumor MLH1 promoter methylation status. These 94 patients were matched by year of surgery to 94 patients with MSI-negative (MSI-) endometrial cancers from the same series. Medical records were reviewed for clinicopathologic information including rates and types of synchronous and metachronous malignancies. Hereditary nonpolyposis colorectal cancer (HNPCC)-associated second and third cancers were analyzed for MSI and MSH2, MSH6, and MLH1 expression for comparison with the corresponding endometrial cancers. RESULTS: The MSI+ and MSI- cohorts were similar with regard to age, race, grade, and histology. Twenty-eight MSI+ endometrial cancers (29.8%) were MLH1 unmethylated. Rates of synchronous and metachronous cancers were also similar in the MSI+ and MSI- groups at 20 and 23%, respectively. However, patients with MSI+ MLH1 unmethylated endometrial cancers had an excess of HNPCC-associated second and third cancers compared with those with MSI+ MLH1 methylated and MSI- endometrial cancers (18% versus 4.5%, P = 0.034, and 2.1%, P = 0.002). Six of seven second tumors from 5 patients with MSI+ MLH1 unmethylated endometrial cancers showed concordant MSI and mismatch repair protein expression status. CONCLUSIONS: Our observation that patients with MSI-positive MLH1 unmethylated endometrial carcinoma are at increased risk for HNPCC-associated synchronous and metachronous malignancies suggests inherited cancer susceptibility. These patients and their families may warrant more intense cancer surveillance.

Age of Onset↗

RAS/RAF mutation and defective DNA mismatch repair in endometrial cancers.

OBJECTIVE: Defective DNA mismatch repair is a common genetic abnormality in both colon cancers and endometrial cancers. Cancers with defective DNA mismatch repair have the so-called mutator phenotype and accumulate genetic errors at an increased rate. An early mutational target in cells with defect DNA mismatch repair may be the RAS/RAF pathway. Colon cancers often have KRAS2 mutations and, if not KRAS2 mutations, may have BRAF mutations. This study investigated the spectrum and frequency of mutations in BRAF and KRAS2 in endometrial carcinomas on the basis of mismatch repair status. STUDY DESIGN: Four hundred forty-one patients with endometrial cancer were staged properly and graded and evaluated for mismatch repair status. These patients were then stratified to groups by the degree of microsatellite instability that was observed in their tumors. One hundred forty-six of the selected tumors were then evaluated for KRAS2 and BRAF mutations on the basis of their microsatellite instability. RESULTS: One hundred forty-six endometrioid endometrial cancers were evaluated for KRAS2 and BRAF mutations. Thirty-five cancers (24%) had activating KRAS2 mutations, but only a single BRAF mutation was identified in an microsatellite instability-positive cancer. Twenty-four of 81 microsatellite instability high cancers (29.6%) in which the MLH1 repair gene was methylated had KRAS2 mutations. When compared with the other groups, this finding approached statistical significance (P=.06). KRAS2 mutation status was associated with increasing age at diagnosis (P=.02). CONCLUSION: Despite many similarities between colon and endometrial cancers, the mechanism of the development of endometrial cancers appears to be different from colon cancers in that BRAF is not affected by a mismatch repair problem, because only KRAS2 mutations were seen. In addition, increasing age appears to lead to an increased likelihood that such a mutation will occur.

Adenocarcinoma, Clear Cell↗

Prevalence of defective DNA mismatch repair and MSH6 mutation in an unselected series of endometrial cancers.

Endometrial cancer is the most common gynecologic malignancy in the United States and the most frequent extracolonic tumor in hereditary nonpolyposis colorectal cancer (HNPCC). HNPCC patients have inherited defects in DNA mismatch repair and the microsatellite instability (MSI) tumor phenotype. Sporadic endometrial cancers also exhibit MSI, usually associated with methylation of the MLH1 promoter. Germ-line MSH6 mutations, which are rare in HNPCC, have been reported in several families with multiple members affected with endometrial carcinoma. We reasoned that MSH6 mutation might account for loss of mismatch repair in MSI-positive endometrial cancers in which the cause of MSI is unknown. We therefore investigated MSI and MLH1 promoter methylation in 441 endometrial cancer patients unselected for age or personal and family history of cancers. MSI and MLH1 promoter methylation status were associated with age of onset and tumor histology. One hundred cases (23% of the entire series) were evaluated for MSH6 defects. Inactivating germ-line MSH6 mutations were identified in seven women with MSI-positive, MLH1 promoter unmethylated cancers. Most of the MSI in these cases was seen with mononucleotide repeat markers. The MSH6 mutation carriers were significantly younger than the rest of the population (mean age 54.8 versus 64.6, P = 0.04). Somatic mutations were seen in 17 tumors, all of which had MSI. Our data suggest that inherited defects in MSH6 in women with endometrial cancer are relatively common. The minimum estimate of the prevalence of inherited MSH6 mutation in endometrial cancer is 1.6% (7 of 441), comparable with the predicted prevalence for patients with colorectal cancer.

Age Factors↗

CDKN1A and CDKN1B polymorphisms and risk of advanced prostate carcinoma.

A multigenic model of prostate cancer susceptibility has been proposed, in which common polymorphic variants of genes, such as the androgen and vitamin D receptor, contribute to tumorigenesis. The discovery of additional genetic factors that contribute to prostate cancer risk should provide opportunities for new approaches to the detection and treatment of this common malignancy. Herein, we examined single nucleotide polymorphic variants in the 3'-untranslated region of CDKN1A (p21(cip1)) and in codon 109 of CDKN1B (p27(kip1)) for association with advanced prostate cancer in a European-American population. Ninety-six cases and 106 controls were analyzed using PCR amplification and restriction digestion assays. CDKN1A genotype was scored as CC, CT, and TT on the basis of the digestion products. The CDKN1A genotypes CT and TT were associated with an increased risk of advanced prostate carcinoma compared with the CC genotype [odds ratio (OR), 2.24; 95% confidence interval (CI), 1.02-4.95]. The CDKN1B genotype was scored as VV, VG, or GG, again on the basis of the digestion products. The CDKN1B genotype VV was also associated with an increased risk of advanced prostate carcinoma (OR, 1.95; 95% CI, 1.09-3.47). These associations were particularly strong in those patients with androgen-independent disease [OR = 2.88 (95% CI, 1.19-6.97) and 2.11 (95% CI, 1.05-4.22) for high-risk genotypes of CDKN1A and CDKN1B, respectively]. In addition, the association of CDKN1B was particularly strong in the cohort of patients under the median age of diagnosis (OR, 2.23; 95% CI, 1.08-4.59). These results suggest that in a European-American population, CDKN1A and CDKN1B variants are associated with advanced prostate cancer. Analysis of CDKN1A and/or CDKN1B genotypes may prove useful in determining which patients are at risk for developing advanced prostate carcinoma and therefore would gain the most from aggressive screening, prophylaxis, and/or treatment.

Adult↗