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Biomedical subjects

M Ilyas

Publications and source records attributed to M Ilyas.

At least 37 records · Page 2Linked to original sources

The type of somatic mutation at APC in familial adenomatous polyposis is determined by the site of the germline mutation: a new facet to Knudson's 'two-hit' hypothesis.

APC is often cited as a prime example of a tumor suppressor gene. Truncating germline and somatic mutations (or, infrequently, allelic loss) occur in tumors in FAP (familial adenomatous polyposis). Most sporadic colorectal cancers also have two APC mutations. Clues from attenuated polyposis, missense germline variants with mild disease and the somatic mutation cluster region (codons 1,250-1,450) indicate, however, that APC mutations might not result in simple loss of protein function. We have found that FAP patients with germline APC mutations within a small region (codons 1,194-1,392 at most) mainly show allelic loss in their colorectal adenomas, in contrast to other FAP patients, whose 'second hits' tend to occur by truncating mutations in the mutation cluster region. Our results indicate that different APC mutations provide cells with different selective advantages, with mutations close to codon 1,300 providing the greatest advantage. Allelic loss is selected strongly in cells with one mutation near codon 1,300. A different germline-somatic APC mutation association exists in FAP desmoids. APC is not, therefore, a classical tumor suppressor. Our findings also indicate a new mechanism for disease severity: if a broader spectrum of mutations is selected in tumors, the somatic mutation rate is effectively higher and more tumors grow.

Adenoma↗

The APC variants I1307K and E1317Q are associated with colorectal tumors, but not always with a family history.

Classical familial adenomatous polyposis (FAP) is a high-penetrance autosomal dominant disease that predisposes to hundreds or thousands of colorectal adenomas and carcinoma and that results from truncating mutations in the APC gene. A variant of FAP is attenuated adenomatous polyposis coli, which results from germ-line mutations in the 5' and 3' regions of the APC gene. Attenuated adenomatous polyposis coli patients have "multiple" colorectal adenomas (typically fewer than 100) without the florid phenotype of classical FAP. Another group of patients with multiple adenomas has no mutations in the APC gene, and their phenotype probably results from variation at a locus, or loci, elsewhere in the genome. Recently, however, a missense variant of APC (I1307K) was described that confers an increased risk of colorectal tumors, including multiple adenomas, in Ashkenazim. We have studied a set of 164 patients with multiple colorectal adenomas and/or carcinoma and analyzed codons 1263-1377 (exon 15G) of the APC gene for germ-line variants. Three patients with the I1307K allele were detected, each of Ashkenazi descent. Four patients had a germ-line E1317Q missense variant of APC that was not present in controls; one of these individuals had an unusually large number of metaplastic polyps of the colorectum. There is increasing evidence that there exist germ-line variants of the APC gene that predispose to the development of multiple colorectal adenomas and carcinoma, but without the florid phenotype of classical FAP, and possibly with importance for colorectal cancer risk in the general population.

Adult↗

A comparison of the genetic pathways involved in the pathogenesis of three types of colorectal cancer.

Patterns of allele loss (loss of heterozygosity, LOH) have been studied in order to investigate the genetic pathways involved in the pathogenesis of three types of colorectal cancer (CRC): sporadic CRC without replication errors (RER-) (32 cases); sporadic RER+ CRC (23 cases); and ulcerative colitis-associated CRC (UCACRC) (16 cases). Each tumour was assessed for allele loss at ten microsatellite markers which map close to known or putative tumour-suppressor genes: APC (5q21-q22); DCC (18q21.1); 1p35-p36; p16 (9p21); 22q; 8p; E-cadherin (16q22.1); beta-catenin (3p22-p21.3); RB1 (13q14.1-q14.2); and HLA. Overall, high frequencies of allele loss (> 30 per cent) were found near DCC (42 per cent), p16 (38 per cent), 22q (37 per cent), 1p35-p36 (34 per cent) and APC (31 per cent), and low frequencies (< 20 per cent) near RB1 (16 per cent) and E-cadherin (13 per cent). LOH near beta-catenin, HLA, and on 8p occurred at frequencies between 20 and 30 per cent. The overall frequency of allele loss did not differ among the three tumour groups, but some variation was seen at individual loci. There was a significantly higher frequency of LOH at 1p35-36 in RER+ tumours compared to RER- tumours. Allele loss at this site was also associated with a more advanced Dukes' stage at presentation. In addition, RER- tumours showed a higher frequency of allele loss at p16 than RER+ tumours. No significant difference existed at any locus between the frequency of LOH in sporadic CRC and in UCACRC. Pairwise analysis showed a negative association between LOH at APC and DCC, and between LOH at chromosome 22p and p53 overexpression. Thus, there may be specific differences between the mutation spectra of RER+ and RER- CRCs, but there are large degrees of overlap among the underlying genetic pathways of these cancers and UCACRCs.

Adult↗

Defects in mismatch repair occur after APC mutations in the pathogenesis of sporadic colorectal tumours.

The roles of the intrinsic mutation rate and genomic instability in tumorigenesis are currently controversial. In most colorectal tumours, it is generally supposed that the first mutations occur at the adenomatous polyposis coli (APC) locus; APC mutations are thought to provide cells with a selective advantage but have no known effect on the mutation rate. It has also been suggested that genomic instability is the initiating event in colorectal tumorigenesis and, if this is true, mutations of DNA mismatch repair (MMR) genes (or at similar loci) are the most likely candidates. If defective MMR precedes APC mutations, the APC mutations of colon tumours with defective MMR and hence replication errors (RER+) should differ from those of RER- tumours, in at least three specific ways: (1) a higher frequency of allele loss at APC in RER- tumours; (2) more frameshift than nonsense mutations in RER+ tumours; and (3) APC mutations in simple repeat sequences [(N)n, (N1N2)n, or (N1N2N3)n] in RER+ tumours. We found no evidence that sporadic RER+ and RER- colon cancers (including cell lines) differ in any of these three ways. Although it remains possible that MMR is abnormal in tumours from HNPCC families before APC mutations occur, it is likely that in sporadic colon tumours, APC mutations, rather than genomic instability, are the initiating events in tumorigenesis.

Alleles↗

Comparable renal graft survival in African-American and Caucasian recipients.

In past years, many pediatric transplant centers found African-American renal transplant recipients to have poor graft survival. Since 1991 anti-lymphocyte induction therapy has been routinely used for pediatric cadaveric (CAD) and living-related donor (LRD) renal allograft recipients at the University of Tennessee, Memphis. Sixteen African-American first renal allograft recipients received induction therapy: 11 CAD allografts (10 OKT3, 1 ATGAM) and five LRD (all ATGAM). Sixteen Caucasian recipients received induction therapy; 3 CAD (all OKT3), 1 living-unrelated donor (OKT3), and 12 LRD (9 ATGAM, 3 OKT3). Mean age at renal transplantation was 11.8 and 10.5 years for African-American and Caucasian recipients, respectively. Predicted graft survival (PGS) estimated by the Kaplan-Meier method for the African-American patients was 94% at both 1 and 3 years, and for Caucasian patients was 94% and 85% at 1 and 3 years, respectively. Eleven African-American CAD recipients had a PGS of 91% at 1 and 3 years. Renal allograft survival for African-American and Caucasian pediatric recipients at our center appears to be comparable. This could be due, in part, to the use of anti-lymphocyte induction therapy. However, other factors, such as improved compliance or better immunological and pharmacological monitoring, may also have contributed.

Adolescent↗

Loss of Bcl-2 expression correlates with tumour recurrence in colorectal cancer.

AIMS: To investigate the association between immunohistochemical expression of Bcl-2 and p53 in colorectal cancer and tumour recurrence following surgery. METHODS: Sixty six cases of Dukes' B colorectal carcinoma were studied. All tumours were moderately differentiated and were shown to be histologically clear of the resection margins. Immunohistochemistry was performed on formalin fixed paraffin wax embedded tissue using monoclonal antibodies for p53 and Bcl-2. The Bcl-2 staining was assessed separately for relative intensity of staining and percentage of positive tumour cells and given a final score which combined the two factors. The p53 staining was assessed on number of positive tumour cells only. The patterns of immunostaining of those cases in which there had been tumour recurrence were compared with those cases in which there was no tumour recurrence (controls). RESULTS: A statistically significant inverse association was found between Bcl-2 score and tumour recurrence (median Bcl-2 score of 6 (interquartile range (IQR) 2-9) in patients with recurrent disease; median Bcl-2 score of 8 (IQR 6-10) in those without recurrence; p = 0.03). When examined separately, both the intensity of expression and percentage of positive tumour cells were significantly associated with tumour recurrence (p = 0.04 in each case). There was no association between p53 staining and tumour recurrence. CONCLUSION: Results suggest that, when controlled for differentiation, Bcl-2 expression is a prognostic marker and may be useful as an adjunctive test in clinical decision making.

Biomarkers, Tumor↗

Beta-catenin mutations in cell lines established from human colorectal cancers.

beta-catenin has functions as both an adhesion and a signaling molecule. Disruption of these functions through mutations of the beta-catenin gene (CTNNB1) may be important in the development of colorectal tumors. We examined the entire coding sequence of beta-catenin by reverse transcriptase-PCR (RT-PCR) and direct sequencing of 23 human colorectal cancer cell lines from 21 patients. In two cell lines, there was apparent instability of the beta-catenin mRNA. Five different mutations (26%) were found in the remaining 21cell lines (from 19 patients). A three-base deletion (codon 45) was identified in the cell line HCT 116, whereas cell lines SW 48, HCA 46, CACO 2, and Colo 201 each contained single-base missense mutations (codons 33, 183, 245, and 287, respectively). All 23 cell lines had full-length beta-catenin protein that was detectable by Western blotting and that coprecipitated with E-cadherin. In three of the cell lines with CTNNB1 mutations, complexes of beta-catenin with alpha-catenin and APC were detectable. In SW48 and HCA 46, however, we did not detect complexes of beta-catenin protein with alpha-catenin and APC, respectively. These results show that selection of CTNNB1 mutations occurs in up to 26% of colorectal cancers from which cell lines are derived. In these cases, mutation selection is probably for altered beta-catenin function, which may significantly alter intracellular signaling and intercellular adhesion and may serve as a complement to APC mutations in the early stages of tumorigenesis.

Amino Acid Sequence↗

The interactions of APC, E-cadherin and beta-catenin in tumour development and progression.

Much progress has been made in identifying genes mutated during the development of colorectal carcinoma. Mutation of the APC gene in particular appears to be fundamental for colorectal tumour initiation. In contrast, loss of expression of E-cadherin appears to be a late event, which may be important in the development of invasion. Recent clarification of the function of APC, however, has shown that it exists in equilibrium with beta-catenin and E-cadherin. This review discusses the function of these molecules, their interactions, and how APC mutations may alter the equilibrium with beta-catenin and E-cadherin. It is argued that these changes cause aberrant architectural development of tissue, which results in loss of growth control. It is this escape from growth control, rather than acquisition of cell-autonomous growth, which results in the initial development of adenomas. The role of the E-cadherin-catenin unit in colorectal tumour invasion is discussed and the evidence is reviewed for the involvement of APC and E-cadherin in tumours arising from non-intestinal epithelia.

Cadherins↗

Reciprocity between membranous and nuclear expression of beta-catenin in colorectal tumours.

beta-Catenin has a central role not only in linking the cadherin-mediated cell adhesion system but also in the intercellular signalling pathway. To investigate alterations of beta-catenin in the development of colorectal carcinoma, the pattern of beta-catenin expression was studied using immunohistochemistry in 74 sporadic colorectal adenomas, in histologically normal mucosa adjacent to 65 of these adenomas, and in 52 carcinomas arising in adenomas. All normal epithelia displayed cell boundary staining for beta-catenin. Adenomas and carcinomas showed varying degrees of membranous staining. However, some tumours also showed nuclear staining of beta-catenin protein. Decreased membranous and increased nuclear beta-catenin staining were associated with increasing degrees of dysplasia in adenomas (P < 0.005, P < 0.05, respectively). Carcinomas manifested significantly reduced membranous, but enhanced nuclear beta-catenin expression compared with their associated adenomas (P < 0.001, P < 0.005, respectively). An inverse correlation was found between decreased membranous and increased nuclear staining of beta-catenin in both adenomas and carcinomas (P < 0.025, P < 0.05, respectively). The data confirm that reduced membranous and increased nuclear expression of beta-catenin is associated with the progression of colorectal adenomas to carcinomas. Our results also suggest that decreased membranous expression of beta-catenin may result from aberrant localisation of the protein in the cell nucleus.

Adenoma↗

Molecular genetics of colon cancer.

Colorectal cancer remains a major health problem. Few therapies are effective apart from surgery, and survival has increased little in recent years. This is despite the fact that screening by colonoscopy can potentially remove nearly all colorectal tumours before they become malignant. Molecular genetics has identified some inherited mutations (such as at APC and the mismatch repair loci) that predispose to colon cancer and some somatic mutations (such as at APC and p53) that cause sporadic colon tumours. We review the likely role of these and other genes in colorectal tumorigenesis. We also highlight areas of relative ignorance in colon cancer and emphasise that many important genes, especially those that cause invasion and metastasis, remain to be identified. Colorectal cancer is, however, a well characterised tumour, as regards both its natural history and its histopathology; there are consequently good prospects for advances in colon cancer genetics, with probable benefits for its treatment. We anticipate: (a) that new genes predisposing to colon tumours, including those conferring relatively minor risks, will be characterised; (b) genes and proteins important in invasion and metastasis will be identified; (c) the network of protein interactions in which molecules such as APC are involved will be elucidated; (d) large-scale studies of somatic mutations in tumours will provide accurate predictions of prognosis and suggest optimal therapeutic regimens; and (e) new potential targets for therapy will be identified. Whilst molecular genetics is by no means sufficient for progress in preventing and treating colon cancer, it is a necessary and central part of such advances.

Adenoma↗

Allele loss, replication errors and loss of expression of E-cadherin in colorectal cancers.

BACKGROUND: Loss of E-cadherin expression has been implicated in the development of invasive characteristics in colorectal carcinomas. Failure to express E-cadherin may result from mutations of the E-cadherin gene (HSECAD). AIMS: To examine the correlation between E-cadherin expression and genetic changes at HSECAD; and to examine differences in E-cadherin expression and genetic changes at HSECAD between three different groups of colorectal cancer--replication error positive (RER+) sporadic cancers, RER--sporadic cancers and ulcerative colitis associated cancers. SUBJECTS AND METHODS: Sixty eight colorectal cancers (22 RER+ sporadic cancers, 32 RER- sporadic cancers and 14 ulcerative colitis associated cancers) were studied using immunohistochemistry and for allele loss at the HSECAD locus. Exon 16 of HSECAD contains several mononucleotide repeat tracts which are very similar to microsatellite repeats and which may be susceptible to replication errors (manifest as new alleles). All cases were also examined for new alleles in exon 16. RESULTS: Absent or decreased E-cadherin protein expression was found in 27 (38%) of 68 colorectal cancers and the pattern of expression did not differ significantly among the three tumour groups. Allele loss occurred at HSECAD in four (10%) of 40 informative cancers and there were no differences between the three subgroups. New alleles at exon 16 were detected in three (14%) of 22 RER+ tumours; no new alleles were detected in RER- or ulcerative colitis associated cancers. Overall, there was no correlation between allelic loss or exon 16 replication errors and immunohistochemical E-cadherin expression. CONCLUSIONS: (1) Loss of E-cadherin expression probably does not occur as a result of mutation at the HSECAD locus in colorectal cancers. (2) There is no difference in the frequency of loss of heterozygosity at HSECAD among RER+, RER- and ulcerative colitis associated colorectal cancers.

Alleles↗

Tumour recurrence is associated with Jass grouping but not with differences in E-cadherin expression in moderately differentiated Dukes' B colorectal cancers.

AIMS: To assess whether immunohistochemical expression of the putative invasion suppressor, E-cadherin, is associated with tumour recurrence in colorectal cancer, independent of Dukes' stage and degree of differentiation, and thus to determine whether measurement of E-cadherin is clinically useful. METHODS: 90 moderately differentiated Dukes' B colorectal carcinomas from patients who had been followed up for at least six years were examined. All were from curative resections performed at St Mark's Hospital and the tumours were shown, on histology, to be clear of all resection margins. Tumours were reviewed and additionally classified in accordance with the Jass grouping system. Immunohistochemical analysis of E-cadherin expression was performed for each tumour using the monoclonal antibody HECD 1. RESULTS: The Jass group ranged between I and III and there was a significant association between Jass group and tumour recurrence (p < 0.05). Positive E-cadherin expression was seen in 40/69 (58%) of non-recurrent and 13/21 (62%) recurrent cases respectively. There was no significant difference in E-cadherin expression between the two groups of tumours. CONCLUSIONS: Even when controlled for Dukes' stage and differentiation, the Jass grouping system yields useful prognostic information; E-cadherin, however, does not predict outcome in the important group of moderately differentiated Dukes' B colon cancers, and may be of little independent prognostic value in other colon cancers.

Cadherins↗

Expression of Bcl-2 and p53 in the colorectal adenoma-carcinoma sequence.

To evaluate the respective roles of Bcl-2 and p53 during colorectal tumour growth, 73 sporadic adenomas and 54 carcinomas arising in adenomas were studied by immunohistochemistry. Bcl-2 protein was expressed in 72 of 73 (98.6%) adenomas and in 25 of 54 (46.3%) carcinomas, whereas p53 protein expression was found in 18 of 73 (24.6%) adenomas and 23 of 54 (42.6%) carcinomas. Bcl-2 expression was related to the size and increasing severity of dysplasia (p < 0.05), while p53 expression was associated with the degree of dysplasia, but not with size (p < 0.025 and p > 0.10, respectively). Bcl-2 expression in carcinomas arising in adenomas was significantly reduced when compared with the associated adenoma (p < 0.005). However, there was no such difference in p53 expression between carcinomas and associated adenomas. Interestingly, there were inverse correlations between p53 and Bcl-2 expression in both adenomas and carcinomas (p < 0.05 and p < 0.005, respectively). We conclude that increased expression of Bcl-2 in adenomas may imply increasing protection against apoptosis during the progression from mild to severe dysplasia. Reduced expression of Bcl-2 may be due to downregulation by mutant p53 and may mark the point of transition from adenoma to carcinoma.

Adenoma↗

Clinico-pathological features and p53 expression in left-sided sporadic colorectal cancers with and without microsatellite instability.

Defects in mismatch repair (MMR) can result in the development of a 'mutator phenotype', manifest as an increase in DNA replication errors (RERs). Patients with hereditary non-polyposis colorectal cancer (HNPCC) have germline mutations in MMR genes. These patients develop carcinomas of the colon and other specific sites at a significantly earlier age than patients with sporadic carcinomas. RERs are found in the cancers from patients with HNPCC and have been demonstrated in 10-20 per cent of sporadic colorectal cancers (CRCs). Loss of MMR may simply accelerate tumour development, but it is also possible that these tumours follow a different carcinogenetic pathway from tumours with intact MMR. In particular, it has been suggested that p53 mutations occur less often in RER-positive (RER+) sporadic colorectal cancers. In this study, the clinico-pathological features and frequency of p53 overexpression in 17 left-sided RER+ CRCs were compared with 35 left-sided RER- CRCs. No differences were found in the age and tumour stage at presentation, mucinous differentiation, or Jass prognostic grouping between these two types of CRC. Thirteen out of 17 (76 per cent) RER+ and 19/35 (54 per cent) RER- tumours showed overexpression of p53, a non-significant difference (chi 2 test). Although some previous studies have suggested differences in the clinico-pathological features and p53 expression of RER+ and RER- right-sided CRCs, our results show that these differences do not exist in left-sided cancers.

Aged↗

Changes in Bcl-2 and p53 expression in recurrent B-cell lymphomas.

The aim of this study was to investigate the changes involved in the evolution of nine cases of recurrent B-cell lymphomas. Using the polymerase chain reaction (PCR) on formalin-fixed, paraffin-embedded tissue from both the primary and the recurrent lymphoma of each case, monoclonality was demonstrated in every tumour. In all nine cases, the recurrent lymphoma was shown to belong to the same clone as the primary lymphoma. Eight of these cases were then investigated by immunohistochemistry for changes in Bcl-2 and p53 expression. Five out of eight of the primary lymphomas showed Bcl-2 overexpression. Two of the three cases initially negative for Bcl-2 expression became positive in the recurrence. One out of eight of the primary lymphomas was positive for p53 expression. Of the seven negative cases, one became positive for p53 expression in the recurrence. Both of the p53-positive cases showed high-grade histology. This study shows that Bcl-2 overexpression is probably an important early event in the development of B-cell lymphomas, although it may occur as a post-neoplastic event. p53 mutation is probably more important as a late event and may be associated with high-grade transformation.

Gene Expression Regulation, Neoplastic↗

Serious infections due to penicillin-resistant Streptococcus peneumoniae in two children with nephrotic syndrome.

Children with nephrotic syndrome are susceptible to the development of invasive bacterial infections, particularly those caused by Streptococcus peneumoniae. Recently, penicillin-resistant pneumococcal infections in children have occurred in increased frequency in some regions. We have seen two children with nephrotic syndrome who developed penicillin-resistant pneumococcal bacteremia and/or peritonitis. A change in the initial therapy from penicillin in the usual dose in these patients must be considered.

Female↗

Allele loss occurs frequently at hMLH1, but rarely at hMSH2, in sporadic colorectal cancers with microsatellite instability.

Mutations at the hMSH2 and hMLH1 mismatch repair loci have been implicated in the pathogenesis of colorectal cancer. Tumours with two allelic mutations at a mismatch repair locus develop replication errors (RERs). In the hereditary non-polyposis colorectal cancer (HNPCC) syndrome, one mutation is inherited and the other acquired somatically: in RER+ sporadic colorectal cancers, both mutations are somatic. RER+ tumours tend to have a low frequency of allele loss, presumably because they acquire most mutations through RERs. However, before a second mismatch repair mutation has occurred somatically, there is no reason to suppose that allele loss occurs less frequently in tumours that are to become RER+. Indeed, this second mutation might itself occur by allele loss. We have searched for allele loss at the hMSH2 and hMLH1 loci in RER+ and RER- sporadic colorectal cancers. Loss occurred at the hMLH1 locus in 7/17 (41%) RER+ tumours, compared with 6/40 (15%) RER- cancers (chi2=3.82, P approximately 0.05). At hMSH2, 2/22 RER+ sporadic cancers (9%) had lost an allele, compared with 2/40 (5%) RER- cancers (chi2=0.03, P>0.5). Taken together with previous studies which focused on colorectal cancers from HNPCC families, the data suggest that allele loss at hMLH1, but not at hMSH2, contributes to defective mismatch repair in inherited and sporadic colorectal cancer.

Adaptor Proteins, Signal Transducing↗

Genetic pathways in colorectal cancer.

The model of colorectal tumorigenesis put forward by Fearon and Vogelstein has had great influence on molecular oncology. They proposed that a series of mutations occur in the progression from normal cells to colorectal cancer and that these mutations are associated with the histological features of such tumours. Several postulates of the model appear to be correct, particularly its emphasis on the stepwise accumulation of genetic changes and the inclusion of mutations at the adenomatous polyposis coli (APC) and TP53 loci. Since the publication of the original model, however, mutations at other loci have been identified which may be alternatives or additions. There is also evidence to suggest that some colorectal cancers develop along a different genetic pathway. In this review, we discuss how tumour development can occur as Darwinian evolution through selection of advantageous somatic mutations. The non-random nature of mutation selection gives rise to genetic pathways of tumorigenesis. In addition, we consider the Fearon and Vogelstein model, its shortcomings and possible additions to it. The evidence suggests that not all colorectal cancers follow the same genetic pathway during carcinogenesis.

Carcinoma↗