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Open AccessJournal ArticleDOI

DNA microarrays identification of primary and secondary target genes regulated by p53.

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TLDR
The results suggest that p53 activates concerted opposing signals and exerts its effect through a diverse network of transcriptional changes that collectively alter the cell phenotype in response to stress.
Abstract
The transcriptional program regulated by the tumor suppressor p53 was analysed using oligonucleotide microarrays. A human lung cancer cell line that expresses the temperature sensitive murine p53 was utilized to quantitate mRNA levels of various genes at diAerent time points after shifting the temperature to 328C. Inhibition of protein synthesis by cycloheximide (CHX) was used to distinguish between primary and secondary target genes regulated by p53. In the absence of CHX, 259 and 125 genes were up or down-regulated respectively; only 38 and 24 of these genes were up and down-regulated by p53 also in the presence of CHX and are considered primary targets in this cell line. Cluster analysis of these data using the super paramagnetic clustering (SPC) algorithm demonstrate that the primary genes can be distinguished as a single cluster among a large pool of p53 regulated genes. This procedure identified additional genes that co-cluster with the primary targets and can also be classified as such genes. In addition to cell cycle (e.g. p21, TGF-b, Cyclin E) and apoptosis (e.g. Fas, Bak, IAP) related genes, the primary targets of p53 include genes involved in many aspects of cell function, including cell adhesion (e.g. Thymosin, Smoothelin), signaling (e.g. H-Ras, Diacylglycerol kinase), transcription (e.g. ATF3, LISCH7), neuronal growth (e.g. Ninjurin, NSCL2) and DNA repair (e.g. BTG2, DDB2). The results suggest that p53 activates concerted opposing signals and exerts its eAect through a diverse network of transcriptional changes that collectively alter the cell phenotype in response to stress. Oncogene (2001) 20, 2225‐2234.

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Gene Expression Profiling Elucidates Cellular Responses to NCX4040 in Human Ovarian Tumor Cells: Implications in the Mechanisms of Action of NCX4040

TL;DR: In this paper , the authors showed that NCX404040 treatment resulted in the differential induction of oxidative stress genes, inflammatory response genes, DNA damage response and MAP kinase response genes in human ovarian tumor cells.

Improving design, execution and analysis of transcriptomics experimentation

O. Bruning
TL;DR: This research used its own experiences with a large-scale in-vitro study on the effects of UV-radiation on p53 in mouse embryonic fibroblasts, that yielded only non-specific responses to identify which elements of the experimental chain of designing, executing and analyzing transcriptomics experimentation should be amended to enhance its reliability.
Journal ArticleDOI

TMC5 is Highly Expressed in Human Cancers and Corelates to Prognosis and Immune Cell Infiltration: A Comprehensive Bioinformatics Analysis

TL;DR: The expression of TMC5 was not only prognostic for overall survival (OS) or recurrence free survival (RFS) in various types of cancers but also correlated to OS in patients with more advanced cancers and the mutational status of T MC5 is also associated with prognosis in cancer patients.
Dissertation

Global profiling of host cell gene expression during adenovirus infection.

TL;DR: Gene expression profiles in human primary lung fibroblasts (IMR-90) during the very early phase of an adenovirus infection indicate that the earliest consequences of anAdenov virus infection are growth arrest and induction of an immune response.
Book ChapterDOI

Zellzyklus und Apoptose

TL;DR: In this paper, eine Zelle teilt sich nach einer Wachstumsphase in zwei Tochterzellen, die ihre gesamten Eigenschaften erben.
References
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Journal ArticleDOI

p53, the Cellular Gatekeeper for Growth and Division

TL;DR: The author regrets the lack of citations for many important observations mentioned in the text, but their omission is made necessary by restrictions in the preparation of review manuscripts.
Journal ArticleDOI

Mdm2 promotes the rapid degradation of p53

TL;DR: It is proposed that the Mdm2-promoted degradation of p53 provides a new mechanism to ensure effective termination of the p53 signal.
Journal ArticleDOI

Regulation of p53 stability by Mdm2

TL;DR: It is shown that interaction with Mdm2 can also result in a large reduction in p53 protein levels through enhanced proteasome-dependent degradation, which may contribute to the maintenance of low p53 concentrations in normal cells.
Journal ArticleDOI

Tgfbeta signaling in growth control, cancer, and heritable disorders

TL;DR: The author would like to thank S. H. Roan for all her help and members of the Massague laboratory for insightful discussions.
Journal ArticleDOI

Definition of a consensus binding site for p53.

TL;DR: In this paper, a consensus binding site with a striking internal symmetry was identified, consisting of two copies of the 10 base pair motif 5′-PuPuC(A/T)(T/A)GPyPyPy-3′ separated by 0-13 base pairs.
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