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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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Pancreatic cancer cell glycosylation regulates cell adhesion and invasion through the modulation of α2β1 integrin and E-cadherin function.

TL;DR: Changes in the sialylation pattern of α2β1 integrin and E-cadherin appear to influence the functional role ofThese two glycoproteins supporting the role of these glycans as an underlying mechanism regulating pancreatic cancer cell adhesion and invasion.
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A Double-Edged Sword: How Oncogenes and Tumor Suppressor Genes Can Contribute to Chromosomal Instability

TL;DR: The results indicate that the induction of CIN can no longer be considered separately from the cancer-associated driver mutations and how the oncogenic activation of key signal transduction pathways contributes to the inductionof CIN is discussed.
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Combating pancreatic cancer with PI3K pathway inhibitors in the era of personalised medicine

TL;DR: The following review discusses the trend of PDAC therapy towards molecular subtyping for biomarker-driven personalised therapies, highlighting the key pathways under investigation and their relationship to the PI3K pathway.

Epithelial Splicing Regulatory Protein 1 is a Favorable Prognostic Factor in Pancreatic Cancer that Attenuates Pancreatic Metastases

TL;DR: ESRP1 regulates the expression pattern of FGFR-2 isoforms, attenuates cell growth, migration, invasion and metastasis, and is a favorable prognostic factor in PDAC, therefore, devising mechanisms to upregulate ESRP1 may exert a beneficial therapeutic effect inPDAC.
Journal ArticleDOI

Polypharmacology in Drug Discovery: A Review from Systems Pharmacology Perspective.

TL;DR: A global view on polypharmacology is provided, which is the foundation of the next paradigm in drug discovery, and some computational methods to predict the potential novel multi-target drugs with lower toxicity and higher efficacy are presented.
References
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Journal ArticleDOI

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TL;DR: This work has been supported by the Department of the Army and the National Institutes of Health, and the author acknowledges the support and encouragement of the National Cancer Institute.
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Book

Pancreatic Cancer

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