Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Transcription of Clock Genes in Medulloblastoma

View through CrossRef
We investigated the transcription of circadian clock genes in publicly available datasets of gene expression in medulloblastoma (MB) tissues using the R2 Genomics Analysis and Visualization Platform. Differential expression of the core clock genes among the four consensus subgroups of MB (defined in 2012 as Group 3, Group 4, the SHH group, and the WNT group) included the core clock genes (CLOCK, NPAS2, PER1, PER2, CRY1, CRY2, BMAL1, BMAL2, NR1D1, and TIMELESS) as well as genes which encode proteins that regulate the transcription of clock genes (CIPC, FBXL21, and USP2). Overexpression of several clock genes, including CIPC, was found in individuals with the isochromosome 17q chromosomal aberration in MB Group 3 and Group 4. The most significant biological pathways associated with clock gene expression were ribosome subunits, phototransduction, GABAergic synapse, WNT signaling pathway, and the Fanconi anemia pathway. Survival analysis of clock genes was examined using the Kaplan Meier method and the Cox proportional hazards regression model through the R2 Genomics Platform. Two clock genes most significantly related to survival were CRY1 and USP2. The data suggest that several clock proteins, including CRY1 and USP2, be investigated as potential therapeutic targets in MB.
Title: Transcription of Clock Genes in Medulloblastoma
Description:
We investigated the transcription of circadian clock genes in publicly available datasets of gene expression in medulloblastoma (MB) tissues using the R2 Genomics Analysis and Visualization Platform.
Differential expression of the core clock genes among the four consensus subgroups of MB (defined in 2012 as Group 3, Group 4, the SHH group, and the WNT group) included the core clock genes (CLOCK, NPAS2, PER1, PER2, CRY1, CRY2, BMAL1, BMAL2, NR1D1, and TIMELESS) as well as genes which encode proteins that regulate the transcription of clock genes (CIPC, FBXL21, and USP2).
Overexpression of several clock genes, including CIPC, was found in individuals with the isochromosome 17q chromosomal aberration in MB Group 3 and Group 4.
The most significant biological pathways associated with clock gene expression were ribosome subunits, phototransduction, GABAergic synapse, WNT signaling pathway, and the Fanconi anemia pathway.
Survival analysis of clock genes was examined using the Kaplan Meier method and the Cox proportional hazards regression model through the R2 Genomics Platform.
Two clock genes most significantly related to survival were CRY1 and USP2.
The data suggest that several clock proteins, including CRY1 and USP2, be investigated as potential therapeutic targets in MB.

Related Results

Abstract 1872: Targeting MYC-driven medulloblastoma using inhibitors of glutamine metabolism.
Abstract 1872: Targeting MYC-driven medulloblastoma using inhibitors of glutamine metabolism.
Abstract Medulloblastoma is the most common malignant brain tumor in children. Currently, treatment consists of surgical resection, chemotherapy, and whole brain and...
Abstract 1729: Investigating deregulated circadian clock machinery in cancer cells
Abstract 1729: Investigating deregulated circadian clock machinery in cancer cells
Abstract The circadian clock plays an integral role in cellular functioning by temporally controlling gene expression, and there is accumulating evidence for a li...
Data from PRC2 Heterogeneity Drives Tumor Growth in Medulloblastoma
Data from PRC2 Heterogeneity Drives Tumor Growth in Medulloblastoma
<div>Abstract<p>Intratumor epigenetic heterogeneity is emerging as a key mechanism underlying tumor evolution and drug resistance. Epigenetic abnormalities frequently o...
Data from PRC2 Heterogeneity Drives Tumor Growth in Medulloblastoma
Data from PRC2 Heterogeneity Drives Tumor Growth in Medulloblastoma
<div>Abstract<p>Intratumor epigenetic heterogeneity is emerging as a key mechanism underlying tumor evolution and drug resistance. Epigenetic abnormalities frequently o...
Transcription of Clock Genes in Medulloblastoma
Transcription of Clock Genes in Medulloblastoma
We investigated the transcription of circadian clock genes in publicly available datasets of gene expression in medulloblastoma (MB) tissues using the R2 Genomics Analysis and Visu...

Back to Top