The Role of Glycosyltransferases in the Oncogenesis of Neuroblastoma
NCT01058798 · Status: COMPLETED · Type: OBSERVATIONAL
Last updated 2010-01-29
Summary
Neuroblastoma (NB) is the most common malignant tumor of infancy. Approximately 60% of NB patients are clinically diagnosed as the stage IV disease and have a very poor prognosis with a 5-year survival rate of no more than 30%. The mechanism underlying the tumorigenesis of NB remains largely unclear. It has been suggested that the pathogenesis of NB is due to a failure of differentiation or apoptosis of the embryonic NB cells.
Well-regulated glycosylation is essential for the normal development of the nervous system. Altered expression of glycosyltransferases with resulting dysregulated glycosylation of neuroblastic cells might lead to the development of NB. The β1,4-N-acetylgalactosaminyltransferase III (B4GALNT3) exhibits GalNAc transferase activity to form the GalNAcβ1,4GlcNAc (LacdiNAc or LDN) structure. The Drosophila B4GALNTA, homolog of human B4GALNT3, has been suggested to regulate the neuronal development. By immunohistochemical studies, we demonstrated that the expression of B4GALNT3 correlated well with histological grade of differentiation in 87 NB tumor samples. In addition, positive B4GALNT3 expression predicted a favorable patient's outcome. These evidences suggest that the regulation of glycosyltransferases is critical for the development of NB.
To further explore the role of glycosyltransferases in the differentiation and development of NB, we propose a 3-year project with the following 3 major aims:
Aim Ⅰ: Clarifying the effects of B4GALNT3 on NB cell behavior in vitro and in vivo. For further understanding the effects of B4GALNT3 on NB cells, NB cells with stable overexpression of B4GALNT3 are to be selected. Then NB cell phenotype and behavior changes after overexpression of B4GALNT3 are evaluated by in vitro assays as well as by a nude mice xenograft model. In addition, the expression of B4GALNT3 will be suppressed by siRNA, then the response of NB cells to ATRA-induced differentiation is evaluated.
Aim Ⅱ: Clarifying the target proteins glycosylated by B4GALNT3 as well as their associated downstream pathways in vitro and in vivo. The possible proteins glycosylated by B4GALNT3 are evaluated by comparing differential protein expressions between B4GALNT3-transfected and mock-transfected NB cells using proteomics analysis. NB tumor samples with low and high B4GALNT3 expression levels are also subjected to proteomics analysis to explore the possible target proteins glycosylated by B4GALNT3 in vivo. After identifying the target proteins modified by B4GALNT3, the downstream pathways to affect NB cell differentiation will also be evaluated.
Aim Ⅲ: Clarifying whether B4GALNT4, a family member of B4GALNT, plays a similar role as B4GALNT3, as well as how the expression of these enzymes are controlled epigenetically in human NB cell lines and tumor samples. The expression levels of B4GALNT4 in human NB samples are evaluated by RT-PCR and immunohistochemistry. The methylation status of the promoter sites of both B4GALNT3 and B4GALNT4 are examined in various NB cell lines as well tumor samples. Furthermore, NB tumor samples exhibiting high and low B4GALNT levels are subjected to microRNA array.
Altogether, our studies will not only establish the functional role of the family of glycosyltransferases in the cell behavior of NB, but also illustrate how the expression of glycosyltransferases are regulated epigenetically and how the glycosyltransferases affect NB cell behavior. Therefore, our results might shed light to the oncogenesis of NB as well as target therapy of NB.
Conditions
Sponsors & Collaborators
-
National Taiwan University Hospital
lead OTHER
Principal Investigators
-
Wen-Ming Hsu, M.D., Ph.D. · National Taiwan University Hospital
Eligibility
- Max Age
- 18 Years
- Sex
- ALL
- Healthy Volunteers
- No
Timeline & Regulatory
- Start
- 2008-01-31
- Primary Completion
- 2008-02-29
- Completion
- 2009-04-30
More Related Trials
-
Protein Expression in Human Neuroblastoma Tumor Samples
NCT01407731 ·Status: COMPLETED
-
Biomarkers in Tumor Samples From Younger Patients With Neuroblastoma
NCT01493830 ·Status: COMPLETED
-
Studying Chromosomes in Samples From Younger Patients With Neuroblastoma
NCT01589341 ·Status: COMPLETED
-
Study of Specimens From Young Patients With Neuroblastoma
NCT00958659 ·Status: COMPLETED
-
Gene Mutation in Samples From Young Patients With Pleuropulmonary Blastoma Syndrome at Risk for Developing Cancer
NCT01353300 ·Status: COMPLETED
-
Studying Genes in Tissue Samples From Younger and Adolescent Patients With Soft Tissue Sarcomas
NCT01567046 ·Status: COMPLETED
-
Molecular Characterization of Neuroblastic Tumor: Correlation With Clinical Outcome
NCT00588068 ·Status: RECRUITING
-
Retrospective Study of Ovarian Cancer Patients With Brain Metastasis
NCT01258881 ·Status: UNKNOWN
-
Biomarkers in Samples From Young Patients With Neuroblastoma
NCT01358604 ·Status: COMPLETED
-
Target Gene Sequencing for Advanced Stage, Relapsed or Refractory Natural Killer/T-cell Lymphoma
NCT04509804 ·Status: COMPLETED
-
Studying Genes in Samples From Younger Patients With Rhabdomyosarcoma
NCT01585376 ·Status: COMPLETED
-
Gene Expression in Predicting Outcome in Samples From Patients With High-Risk Neuroblastoma
NCT01520233 ·Status: COMPLETED
-
Establishing the Incidences of BRCA1 and BRCA2 Mutation by Combining DHPLC and Direct Sequencing in Ovarian Cancer
NCT00155896 ·Status: UNKNOWN
-
Pan-genome Analysis of Neuroblastoma by Comparative Genomic Hybridization and Correlation With Pathology for the Diagnostic and the Prognostic Classification
NCT02864563 ·Status: COMPLETED ·Phase: NA
-
Genetic Analysis Using Blood or Bone Marrow From Participants With Neuroblastoma or Noncancerous Conditions
NCT00436696 ·Status: COMPLETED
-
Clinical Value of Next Generation Sequencing in Chinese Childhood Solid Tumors
NCT05076071 ·Status: UNKNOWN
-
Biomarkers in Blood and Tissue Samples From Patients With Newly Diagnosed Neuroblastoma
NCT01387724 ·Status: COMPLETED
-
Study of DNA in Blood Samples From Patients With Neuroblastoma
NCT00898391 ·Status: COMPLETED
-
Genetic Analysis of Brain Tumors
NCT00031538 ·Status: TERMINATED
-
Early Assessment of Lymphoma Treatment Response Using Phased Variant Analysis With Next-Generation Sequencing
NCT06550427 ·Status: RECRUITING
-
A Retrospective Immunohistochemistry Study of the Expression of Glycine/ Serine Pathway Molecules in Solid Tumors
NCT02103920 ·Status: UNKNOWN
-
UGT1A1 Genotyping in Taiwanese Cancer Patients
NCT05792943 ·Status: UNKNOWN
-
Biomarkers in Tumor Tissue Samples From Patients With Newly Diagnosed Neuroblastoma or Ganglioneuroblastoma
NCT00904241 ·Status: ACTIVE_NOT_RECRUITING
-
Studying DNA in Tumor Tissue Samples From Patients With Localized or Metastatic Osteosarcoma
NCT01062438 ·Status: COMPLETED
-
Studying DNA in Blood and Bone Marrow Samples From Young Patients With Acute Lymphoblastic Leukemia
NCT01016379 ·Status: COMPLETED