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Biomedical subjects

H K Schackert

Publications and source records attributed to H K Schackert.

At least 19 recordsLinked to original sources

Sequence analysis of the mismatch repair gene hMSH6 in the germline of patients with familial and sporadic colorectal cancer.

To evaluate the involvement of hMSH6 in colorectal cancer, the complete coding sequence and flanking intron regions of the gene were analyzed by DNA sequencing in 10 patients fulfilling Bethesda Guidelines for colorectal tumors and 10 patients with sporadic colorectal carcinoma. In addition, 10 mono- and 10 dinucleotide repeat markers were analyzed for microsatellite instability. A protein-truncating T insertion at codon 218 was identified in the index person of a hereditary non-polyposis colorectal cancer (HNPCC)-like kindred and was accompanied by a somatic T deletion in the tumor. The tumor of this patient was positive for mono- but negative for dinucleotide repeat instability and lacked allelic losses at loci frequently affected in colorectal carcinomas. A novel amino acid change, F340S, was found in a patient with sporadic colon and breast cancer and leukemia but was not detected in 246 chromosomes from healthy anonymous blood donors. In addition, we describe 2 silent and 15 intronic sequence variants not previously reported. Although the frequency is low, we present further evidence for hMSH6 germline mutations that predispose patients to HNPCC-like phenotypes and suggest that mono- and dinucleotide repeat instability testing may be useful for distinguishing between individuals harboring an hMSH2 or hMLH1 mutation and a mutation of the hMSH6 gene.

Adaptor Proteins, Signal Transducing↗

Molecular profiling of sporadic colorectal tumors by microsatellite analysis.

To investigate the prognostic value of multiple genetic alterations, individual molecular tumor profiles were established in 79 sporadic colorectal carcinomas (41 stage II and 38 stage III). Tumors were analyzed for allelic loss (LOH) and genetic instability (MSI) using 14 microsatellites intragenic to or associated with tumor suppressor or DNA mismatch repair genes. Molecular profiling identified tumors with LOH at multiple loci without microsatellite instability (MSS), tumors with high levels of LOH and low level microsatellite marker instability (MSI-L), and tumors with high levels of MSI (MSI-H), but rare LOH. K-ras mutations occurred more frequently in MSS/MSI-L carcinomas (26%) than in MSI-H colorectal tumors (10%), the latter showing a high frequency of TGFbeta type II frameshift mutations (82%). Correlation of molecular and clinical data revealed a better prognosis for stage III tumor patients displaying 5q12 loss rather than retention of heterozygosity. Thus, molecular profiling allows the identification of new prognostic markers and might facilitate the stratification of colorectal cancer patients.

Adult↗

[Biological principles for multimodal therapy approaches].

Cancer development and progression has been associated with numerous genetic events in tumor cells. Germline mutations of caretaker and gatekeeper genes are responsible for hereditary cancer syndromes. Exogenous factors in conjunction with functional germline variants of a variety of genes may contribute to tumor initiation in sporadic malignant disease. Furthermore, pathways to neoplasia require somatic events in the developing tumor. Acquired or inherited genetic instability permits stepwise tumor progression. The most fearsome aspect of tumor progression is dissemination of tumor cells to draining lymph nodes of the primary or to distant organs, which limits effectiveness of surgical therapy. Cellular heterogeneity of malignant neoplasms has important implications for chemotherapy and radiotherapy. An increasing understanding of the molecular biology of tumors is the prerequisite for improved prediction, prevention and therapy of malignant disease.

Cell Transformation, Neoplastic↗

Expression of TRAIL and its receptors in human brain tumors.

Recently, TRAIL has been demonstrated to selectively induce apoptosis in transformed cell lines, and subsequently four receptors (TRAIL-R1-TRAIL-R4) have been identified. The ability to transduce death signals is restricted to TRAIL-R1/TRAIL-R2. In contrast, TRAIL-R3/TRAIL-R4 are unable to activate apoptotic pathways and have therefore been suggested to act as "decoys" protecting normal tissues from cell death. However, the biological role of the TRAIL system remains incompletely understood. We analyzed the expression of TRAIL and its receptors in a panel of human brain tumors (n = 34) and in four glioma cell lines in comparison to normal brain tissue. Constant co-expression of TRAIL and of receptors TRAIL-R1, TRAIL-R2, and TRAIL-R3 in different tumor entities as well as in normal brain indicates that additional mechanisms might modulate the previously proposed "decoy" model. Furthermore, in contrast to previous reports, we demonstrate TRAIL and TRAIL-R2 to be present on a transcriptional level in normal brain tissue. Exceptional expression of TRAIL-R4 transcripts does not suggest a significant regulatory role of this receptor in the human brain and its tumors.

Alternative Splicing↗

[Preventive surgery of inherited colorectal cancer identified through molecular diagnosis].

Numerous inherited genetic changes predisposing to cancer have already been identified and the number is increasing. Accurate prediction of individual risk by means of molecular diagnosis implies clinical consequences in the treatment of cancer-predisposing syndromes. Using familial adenomatous polyposis (FAP) and hereditary non-polyposis colorectal cancer (HNPCC) as an example, we present here the underlying genetic changes that contribute to tumor development. These genetic alterations can be efficiently identified through molecular diagnostic techniques. Identification of the familial germline mutation permits one to distinguish mutation carriers from non-mutation carriers within affected families and results in individually tailored surveillance and prevention. Therefore, molecular diagnosis is making a contribution to the advances in preventive surgical therapy. The indications are discussed.

Colorectal Neoplasms↗

Hereditary colorectal cancer: clinical consequences of predictive molecular testing.

The continuing increase in knowledge about the genetic basis of carcinogenesis has led to diverse efforts to exploit this knowledge clinically, primarily in the form of predictive genetic testing. In conjunction with family history, gene tests are intended to improve individual cancer risk assessment. The objectives of predictive molecular testing are to identify the disease-causing germline mutation in an index person who has already developed the disease and to distinguish asymptomatic mutation carriers from non-mutation carriers within a given cancer-prone family. At present, genetic testing for colorectal cancer risk, primarily in form of DNA sequencing, is applied in familial adenomatous polyposis (FAP) and hereditary nonpolyposis colorectal cancer (HNPCC). In these inherited colorectal tumor syndromes determining the genetic status may result in an individually tailored surveillance program and prophylactic treatment. The implications of genetic testing for the clinical management of disease, both of mutation and non-mutation carriers, in familial adenomatous polyposis and hereditary nonpolyposis colorectal cancer families are discussed.

Adenomatous Polyposis Coli↗

Gene therapy and gastrointestinal cancer: concepts and clinical facts.

BACKGROUND: Principles of the treatment of gastrointestinal cancer with gene therapy evolved from the advent of techniques in molecular biology, from increasing insights into the molecular basis of tumorigenesis and from the need to develop more efficient treatment modalities. Any gene therapy approach has to take two major tasks into consideration: the therapeutic gene has to be delivered into the target cell population with high efficiency, specificity and safety, and has to act in a way that provides a benefit to the patient. DISCUSSION: Data on 22 clinical trials on malignancies of the gastrointestinal tract are available. They utilize a variety of gene-delivery methods and target cell populations, and there is considerable variety among their strategies. Gene transfer is performed by injection of naked plasmid DNA and by use of DNA-liposome complexes and viral vectors. In some cases, the gene transfer is carried out ex vivo and the patients receive genetically modified cells, whereas other approaches deliver the vector to the target cell population in vivo. The theoretical concepts of gene therapy can be divided into three groups. One approach makes use of suicide genes comprising bacterial or viral genes that convert a nontoxic prodrug into a highly cytotoxic chemotherapeutic agent at the tumor site. This approach aims at higher therapeutic specificity and fewer side effects than with the systemic delivery of cytotoxic agents. The second strategy makes an attempt to invoke the immune system to destroy malignant cells. Different strategies, such as immunization with genetically modified tumor cells or transfer of new genes to T cells, are considered to have clinical benefits. The major advantage of these immunotherapeutic approaches is the systemic effect both on the primary tumor and on metastases. The third strategy evolved from the insight that cancer is a genetic disease caused by activation of oncogenes or inactivation of tumor-suppressor genes. Compensation of genetic defects by the downregulation of activated oncogenes or the restoration of tumor-suppressor-gene functions may be able to revert the malignant phenotype of cancer cells. Of the 22 gene-therapy trials, 17 trials focus on immunotherapy. Only two trials make use of suicide genes and, in three trials, a functional copy of the p53 tumor-suppressor gene was reintroduced into malignant cells. Modalities for gene transfer and the strategies underlying gene therapy will be discussed in the context of gastrointestinal malignancies and the potential benefits for patients.

Clinical Trials as Topic↗

Combined molecular and clinical approaches for the identification of families with familial adenomatous polyposis coli.

OBJECTIVE: Using an interdisciplinary clinical and molecular approach, the authors identified APC germline mutations in families with familial adenomatous polyposis (FAP). Correlation of mutation site with disease manifestation and the impact of molecular data on clinical proceedings were examined. SUMMARY BACKGROUND DATA: Germline mutations in the APC gene predispose to FAP. Established and proposed genotype-phenotype correlations as well as the influence of mutation site on surgical procedures have been reported. The predictive value of APC mutation analysis for disease manifestation and therapeutic decision making needs to be investigated further. METHODS: One hundred twenty-three kindreds of the local FAP registry were included in this study. CHRPE phenotype was defined as at least one large characteristic lesion or a total of four lesions in both eyes. APC mutations were identified by protein truncation test and automated DNA sequencing from patient lymphocyte DNA and RNA. RESULTS: APC germline mutations were identified in 85/123 families with FAP. They were located between codons 213 and 1581 of the APC gene and displayed distinct genotype-phenotype correlations. CHRPE status facilitated mutation analysis by discriminating regions of interest within the APC coding region. Severe manifestations of desmoids were restricted to mutations between codons 1444 through 1581. Whereas 91% (75/82) of at-risk persons were excluded as mutation carriers, APC germline mutations were detected before clinical examination in 9% (7/82) of at-risk persons. One patient agreed to endoscopy only after mutation detection. CONCLUSIONS: This study supports the feasibility of combined molecular and clinical screening of families with FAP and may provide a guideline for routine presymptomatic molecular diagnostics in a clinical laboratory.

Adenomatous Polyposis Coli↗

Quantitative differences between aberrant transcripts which occur as common isoforms and due to mutation-based exon skipping of the mismatch repair gene hMLH1.

About one-third of hereditary non-polyposis colorectal cancer-related mutations in the mismatch repair gene hMLH1 result in the loss of entire exons from the wild type transcripts. Here we describe quantitative differences of hMLH1 transcripts without exon 15, exon 16 or exon 17 in several members of a family with hereditary non-polyposis colorectal cancer. The transcript lacking exon 15 is caused by a G to A transition affecting the last nucleotide of the respective exon and results in a truncated protein. The transcripts lacking exon 16 or exon 17, which are in-frame deletions, were also found in all tested samples of a normal population and represent common isoforms. Reverse transcription-polymerase chain reaction-based relative quantification revealed about 50 % signal intensity for the mutation-based transcript, but less than 10% for the common isoforms, if compared to the wild type. All aberrant transcripts were detected from blood-derived cDNAs but not from samples of normal colon epithelium. Although the biological significance of the common isoforms is unknown, they might lead to false risk assessment in hereditary non-polyposis colorectal cancer cases.

Adaptor Proteins, Signal Transducing↗

[Predictive molecular diagnosis and preventive surgical treatment of hereditary colorectal carcinoma: a new field of interest for surgical research].

Colorectal cancer is one of the most frequent cancers in the Western hemisphere. It seems to be well established that colorectal tumors develop as a result of an accumulation of inherited and/or acquired somatic mutational events in tumor suppressor genes and oncogenes. An increasing understanding of the molecular basis of the most prevalent colorectal cancer syndromes, such as hereditary nonpolyposis colorectal cancer (HNPCC) and familial adenomatous polyposis (FAP), is reflected by modifications in diagnosis and therapy. Therefore, strategies have been developed for predictive molecular diagnosis and preventive surgical treatment of colorectal cancer syndromes. In the future surgical research will participate in research and development in the field of molecular diagnosis of colorectal cancer and will then evaluate the clinical management concepts as a result.

Adenomatous Polyposis Coli↗

Loss of heterozygosity accumulation in primary breast carcinomas and additionally in corresponding distant metastases is associated with poor outcome.

The occurrence of distant metastases is the most feared manifestation of breast cancer, often occurring years after the primary surgery and associated with poor survival. The dominant metastatic clone is characterized by an accumulation of genetic alterations, but it is not actually known at what stage of the metastatic cascade these alterations have occurred. We investigated allelic losses during breast cancer progression in a series of 17 primary breast carcinomas and 22 corresponding brain, liver, lung, and bone metastases (mean metastasis-free interval, 31 months) by analyzing 19 microsatellite markers on seven breast cancer- or metastasis-related chromosomal regions and correlated the incidence of combined loss of heterozygosity (LOH) with metastasis-free and postmetastatic survival. We found that, in comparison with the corresponding primary tumor, additional LOH events are frequently found in metastases and that the incidence of combined LOH in the primary tumor, plus the occurrence of additional LOH events in the distant metastases, correlated significantly with decreased postmetastatic survival. Combined LOH of the three breast cancer-related chromosomal regions alone or in combination with allelic loss at the p53 gene region seems to have a specific influence on the aggressive behavior of metastases. We hypothesize that the occurrence of additional LOH events is either involved in termination of dormancy of micrometastatic tumor cells at distant organ sites or acquired during further progression of metastases.

Bone Neoplasms↗

Genetic alterations of the tumor suppressor gene PTEN/MMAC1 in human brain metastases.

The high mutation rate in advanced brain tumors, recent functional studies, and the high frequency of mutations in prostate metastases all strongly suggest that PTEN/MMAC1 alterations are involved in the formation of metastases. We searched for genetic alterations in the PTEN/MMAC1 gene in 56 consecutive brain metastases from various primary tumors by loss of heterozygosity (LOH), direct sequence analysis, and differential PCR analysis. The highest LOH rates were detected in metastases deriving from lung (67%) and breast (64%) cancers. Three (25%) of the eight detected inactivating mutations (one nonsense mutation, one splice-site mutation, one 11-bp deletion, and five homozygous deletions) were found in metastases originating from 12 different lung carcinomas, suggesting that PTEN/MMAC1 alterations may play a role in the progression of this tumor. With the exception of lung carcinomas, our findings indicate that genetic abnormalities of the PTENM/MMAC1 gene are only involved in a relatively small subset of brain metastases. However, the discrepancy between the high overall LOH rate (50%) and the low frequency of PTEN/MMAC1 mutation detection rate (14%) suggests the presence of one or more additional tumor suppressor genes on chromosome 10q.

Alleles↗

[Hierarchy and research].

Surgical research needs structural and organizational conditions. These have to ensure, that the young surgeon finds the opportunity for scientific activities and development in a highly professional environment.

Curriculum↗

Evidence that TSG101 aberrant transcripts are PCR artifacts.

Critical analysis of the data published so far concerning the TSG101 gene revealed some inconsistencies leading us to its re-evaluation in 80 breast, brain, colon, and neuroectodermal tumors and 37 normal tissue specimens. In this study, the occurrence of TSG101 cDNA aberrant transcripts was verified, but in addition we made observations that are in apparent conflict with the aberrant splicing theory supposed as the underlying mechanism for transcript formation: the location of most deletion breakpoints within exons and nonconformity of these putative splice sites with the highly conserved GT-AG rule, detection of insertions as well as nonreproducible and highly variable results in repeated RT-nested PCRs. Furthermore, we found that reamplification of full-length TSG101 cDNA products leads to the generation of deleted transcripts. In summary, for the first time we provide evidence that the acquired TSG101 transcripts are caused by PCR artifacts.

Artifacts↗

Molecular biology of colorectal cancer and clinical consequences for colorectal cancer syndromes.

Because of the accomplishments in biotechnical research in the past few decades our knowledge about the molecular mechanisms of carcinogenesis has grown rapidly. Colorectal cancer has been one of the most intensively investigated tumor entities, and it seems to be well established that colorectal tumor growth is associated with an accumulation of acquired somatic mutational events in tumor suppressor genes and oncogenes. Recent progress in our understanding of the molecular basis of the most prevalent colorectal cancer syndromes, such as hereditary nonpolyposis colorectal cancer (HNPCC) and familial adenomatous polyposis (FAP), is reflected by modifications in diagnosis and therapy. Identification and characterization of the causative genes for these colorectal cancer syndromes have enabled precise presymptomatic detection of mutations in individuals who bear an a priori risk of about 50% of developing colorectal cancer. Genotype-phenotype correlations might further increase the clinical management of hereditary colorectal cancer. Even though developments in cancer research are restricted to the minority of individuals with hereditary cancer syndromes, growing knowledge about the effect of low penetrance variations in tumor suppressor genes may affect the diagnosis and therapy of sporadic colorectal cancer.

Adenomatous Polyposis Coli↗

Multiple intracerebral haemangioblastomas in identical twins with von Hippel-Lindau disease--a clinical and molecular study.

Von Hippel-Lindau (VHL) disease is an inherited autosomal dominant neoplastic disorder causing central nervous system haemangioblastomas. The VHL gene (3p25-3p26) is known to be a tumour suppressor gene, with its inactivation being responsible for a predisposition to tumour development. As far as we know, the present report of VHL disease manifestation in identical twins is unique. Genetic inquiry into the family background did not reveal this disease among their progenitors. For presymptomatic diagnosis of 17 presently unaffected family members, constitutional DNA of the twins was screened for VHL germline mutations, using loss of heterozygosity studies and exon-specific DNA sequencing. To determine the influence of somatic mutations of the VHL gene in tumourigenesis, DNA of five surgically removed intracerebral haemangioblastomas of the identical twins was analyzed in comparison with their constitutional DNA by DNA sequencing of the complete VHL coding region. However, no allelic losses were found for the VHL gene or for various other tumour suppressor genes (p53, BRCA1, BRCA2, DCC, and MCC). Furthermore, no mutations were found in the constitutional DNA of either twin sister or in the DNA of all five tumour lesions. Based on our observations, we conclude that in certain VHL families, presymptomatic molecular diagnosis of the disease is not feasible and requires close clinical surveillance of all individuals at risk.

Adult↗