| General information | Literature | Expression | Regulation | Mutation | Interaction |
Basic Information | |
|---|---|
Gene ID | 4904 |
Name | YBX1 |
Synonymous | BP-8|CSDA2|CSDB|DBPB|MDR-NF1|NSEP-1|NSEP1|YB-1|YB1;Y box binding protein 1;YBX1;Y box binding protein 1 |
Definition | CBF-A|CCAAT-binding transcription factor I subunit A|DNA-binding protein B|EFI-A|Y-box transcription factor|Y-box-binding protein 1|enhancer factor I subunit A|major histocompatibility complex, class II, Y box-binding protein I|nuclease sensitive element |
Position | 1p34 |
Gene type | protein-coding |
Cancer type | Abstract |
| neuroblastoma;Neurological | The aim of this study was to investigate gene expression changes in disseminatedneuroblastoma by cDNA array technique. Three stage IV neuroblastomas and one neuroblastoma cell line (SK-N-FI) were analyzed. expression profiles were confirmed by semiquantitative RT-PCR and in some instances by Northern blotting.Comparison of expression profiles identified several genes which were highly expressed as well as some which were down-regulated in tumor samples relatively to SK-N-FI cells. The tumors studied lacked N-myc overexpression, while showing up-regulation of basic transcription factors, growth factors and receptors such as NSEP, c-myc binding protein MM1, thymosin beta10 (TMSB10), TNF-R superfamily member 10A (TNFRSF10A) and FZ9. These results suggest that cDNA array technologyis a powerful tool to identify a set of genes involved in neuroblastoma genesis and progression. Thus, the sensitive cDNA array may provide new insight into many aspects of pediatric tumors and play crucial role in the administration of adjuvant therapy of patients with neuroblastoma. |
| glioblastoma;Neurological | PURPOSE: pediatric glioblastoma (pGBM) is a rare, but devastating brain tumor. In contrast to GBM in adults (aGBM), little is known about the mechanisms underlying its development. Our aim is to gain insight into the molecular pathways of pGBM.MATERIALS AND METHODS: Thirty-two pGBM and seven aGBM samples were investigated using biochemical and transcriptional profiling. Ras and Akt pathway activation was assessed through the phosphorylation of downstream effectors, and gene expression profiles were generated using the University Health Network Human 19KcDNA arrays. Results were validated using real-time polymerase chain reaction and immunohistochemistry and compared with existing data sets on aGBM. RESULTS: There are at least two subsets of pGBM. One subset, associated with Ras and Akt pathway activation, has very poor prognosis and exhibits increased expression of genes related to proliferation and to a neural stem-cell phenotype, similar to findings in aggressive aGBM. This subset was still molecularly distinguishable from aGBM after unsupervised and supervised analysis of expression profiles. A second subset, with better prognosis, is not associated with activation of Akt and Ras pathways, may originate from astroglial progenitors, and does not express gene signatures and markers shown to be associated with long-term survival in aGBM. Both subsets of pGBM show overexpression of Y-box-protein-1 that may help drive oncogenesis in this tumor. CONCLUSION: Our work, the first study of gene expression profiles in pGBM, provides valuable insight into active pathways and targets in a cancer with minimal survival, and suggests that these tumors cannotbe understood exclusively through studies of aGBM. |
| glioblastoma;Neurological | Glioblastoma multiforme (GBM) is an aggressive type of brain tumor where <3% of newly diagnosed cases in the patients will survive >5 years. In adults, GBM is the most common type of brain tumor. It is rarer in children, where it constitutes approximately 15% of ALL brain tumors diagnosed. These tumors are often invasive, making surgical resection difficult. Further, they can be refractory to current therapies such as temozolomide. The current dogma is that temozolomide resistance rests on the expression of O6-methylguanine-DNA methyltransferase (MGMT) because it cleaves methylated DNA adducts formed by thedrug. Our laboratory recently reported that another drug resistance gene known as the Y-box binding protein-1 (YB-1) is highly expressed in primary GBM but not innormal brain tissues based on the evaluation of primary tumors. We therefore questioned whether GBM depend on YB-1 for growth and/or response to temozolomide. Herein, we report that YB-1 inhibition reduced tumor cell invasion and growth inmonolayer as well as in soft agar. Moreover, blocking this protein ultimately delayed tumor onset in mice. Importantly, inhibiting YB-1 enhanced temozolomide sensitivity in a manner that was independent of MGMT in models of adult and pediatric GBM. In conclusion, inhibiting YB-1 may be a novel way to improve the treatment of GBM. |
| neuroblastoma;Neurological | Neuroblastoma is one of the most common solid tumors in infancy and early childhood. Using the A/J mouse and a syngeneic neuroblastoma cell line AGN2a, weinduced a strong anti-neuroblastoma cellular immune response when AGN2a transfected to express costimulatory molecules (CD80/CD86/CD54/CD137L) was used as a vaccine in the context of regulatory T cell blockade. Strong humoral immunity was induced by AGN2a-4p immunization in the context with regulatory T cell blockade. Serum from treated mice was used to screen an AGN2a cDNA expression library that was constructed with lambda ZAP express vector in order to identify tumor-associated antigens by SEREX. Twenty one clones were identified by sequencing and comparative analysis of gene pools. Most transcripts play someroles in the neuronal differentiation, cell metabolism, or have previously been identified as transcripts that are over-expressed in other malignancies. The most commonly identified tumor-associated antigen, using serum from AGN2a-4p immunization with Treg blockade mice, was YB-1 protein that also induced a T cell response. These results indicated that potential neuroblastoma-associated antigens were found by the sera from mice immunized with tumor cells expressing costimulatory molecules with regulatory T cell function blockade. The identification of YB-1 as tumor-associated antigens capable of eliciting a T cell response validates our experimental approach and argues for the antigens we haveidentified here to be evaluated as targets of effector immunity and as vaccine candidates. |