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Core Signaling Pathways in Human Pancreatic Cancers Revealed by Global Genomic Analyses

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TLDR
It is found that pancreatic cancers contain an average of 63 genetic alterations, the majority of which are point mutations, which defined a core set of 12 cellular signaling pathways and processes that were each genetically altered in 67 to 100% of the tumors.
Abstract
There are currently few therapeutic options for patients with pancreatic cancer, and new insights into the pathogenesis of this lethal disease are urgently needed. Toward this end, we performed a comprehensive genetic analysis of 24 pancreatic cancers. We first determined the sequences of 23,219 transcripts, representing 20,661 protein-coding genes, in these samples. Then, we searched for homozygous deletions and amplifications in the tumor DNA by using microarrays containing probes for approximately 10(6) single-nucleotide polymorphisms. We found that pancreatic cancers contain an average of 63 genetic alterations, the majority of which are point mutations. These alterations defined a core set of 12 cellular signaling pathways and processes that were each genetically altered in 67 to 100% of the tumors. Analysis of these tumors' transcriptomes with next-generation sequencing-by-synthesis technologies provided independent evidence for the importance of these pathways and processes. Our data indicate that genetically altered core pathways and regulatory processes only become evident once the coding regions of the genome are analyzed in depth. Dysregulation of these core pathways and processes through mutation can explain the major features of pancreatic tumorigenesis.

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Mitochondrial glutamine metabolism via GOT2 supports pancreatic cancer growth through senescence inhibition.

TL;DR: It is shown that mitochondrial glutamine metabolism regulates senescence in human pancreatic ductal adenocarcinoma (PDAC) cells and that elevated reactive oxygen species levels by GOT2 knockdown lead to the cyclin-dependent kinase inhibitor p27-mediated senescenced cells.
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Therapeutic effects of astragaloside IV on myocardial injuries: multi-target identification and network analysis.

TL;DR: The results suggested that the therapeutic effects of AGS-IV are based upon a combination of blocking calcium influx, vasodilation,anti-thrombosis, anti-oxidation,Anti-inflammation and immune regulation.
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A network of conserved damage survival pathways revealed by a genomic RNAi screen.

TL;DR: It is concluded that identification of pathways can facilitate comparative biology analysis when direct gene/orthologue comparisons fail, and a biologically intuitive, highly interconnected MMS survival network was revealed after it was incorporated in the interactome analysis.
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What are we learning from the cancer genome

TL;DR: New features of cancer genomes that are being revealed by large-scale applications of massively parallel approaches to nucleic acid sequencing are reviewed, highlighting the formidable genetic heterogeneity within given cancer types that is appreciable with higher resolution profiling and larger sample sets.
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Five key lncRNAs considered as prognostic targets for predicting pancreatic ductal adenocarcinoma.

TL;DR: Results suggested that this five‐lncRNAs signature could act as potential prognostic biomarkers in the prediction of PDAC patient's survival.
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Book

Pancreatic Cancer

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