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Abnormality in cellular phosphorylation is closely related to oncogenesis. Thus, kinase inhibitors, especially tyrosine kinase inhibitors (TKIs), have been developed as anti-cancer drugs. Genomic analyses have been used in research on TKI sensitivity, but some types of TKI resistance have been unclassifiable by genomic data. Therefore, global proteomic analysis, especially phosphotyrosine (pY) proteomic analysis, could contribute to predict TKI sensitivity and overcome TKI-resistant cancer. In this study, we conducted deep phosphoproteomic analysis to select active kinase candidates in colorectal cancer intrinsically resistant to Cetuximab. The deep phosphoproteomic data were obtained by performing immobilized metal-ion affinity chromatography-based phosphoproteomic and highly sensitive pY proteomic analyses. Comparison between sensitive (LIM1215 and DLD1) and resistant cell lines (HCT116 and HT29) revealed active kinase candidates in the latter, most of which were identified by pY proteomic analysis. Remarkably, genomic mutations were not assigned in most of these kinases. Phosphorylation-based signaling network analysis of the active kinase candidates indicated that SRC-PRKCD cascade was constitutively activated in HCT116 cells. Treatment with an SRC inhibitor significantly inhibited proliferation of HCT116 cells. In summary, our results based on deep phosphoproteomic data led us to propose novel therapeutic targets against cetuximab resistance and showed the potential for anti-cancer therapy.
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http://dx.doi.org/10.1038/s41598-017-10478-9 | DOI Listing |
Ecotoxicol Environ Saf
September 2025
Anhui Province Key Laboratory of Medical Physics and Technology, Institute of Health & Medical Technology, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China; Wanjiang Emerging Industry Technology Development Center, Tongling 244000, China; Collaborative Innovatio
Metab Eng
September 2025
Department of Chemical Engineering, the Pennsylvania State University, University Park, Pennsylvania, USA; Center for Bioenergy Innovation, Oak Ridge, Tennessee, USA. Electronic address:
Clostridium thermocellum is an increasingly well-studied organism with considerable advantages for consolidated bioprocessing towards ethanol production. Here, a genome-scale resource balance analysis (RBA) model of C. thermocellum, ctRBA, is reconstructed based on a recently published stoichiometric model (iCTH669), global proteomics, and C MFA datasets to analyze proteome allocation and the burden imposed on metabolism with regard to ethanol yield and titer.
View Article and Find Full Text PDFJ Ethnopharmacol
September 2025
Department of Pharmacy, The First Affiliated Hospital of Anhui Medical University, Hefei, China. Electronic address:
Ethnopharmacological Relevance: Curcuma wenyujin was first recorded in the Tang Dynasty's Xinxiu Bencao and has been traditionally used to treat blood stasis syndrome. Its active component curdione exhibits antiplatelet effects, though its anticoagulant mechanisms remain unclear and require further investigation.
Aim Of The Study: To investigate the anticoagulant activity of curdione, identify potential targets through integrated screening, and elucidate the underlying mechanisms.
Brain Behav Immun
September 2025
Department of Neurology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China. Electronic address:
Background: The proteome is a valuable resource for pinpointing therapeutic targets. Therefore, we conducted a proteome-wide Mendelian randomization (MR) study aimed at identifying potential protein markers and therapeutic targets for Anti-N-Methyl-D-Aspartate Receptor Encephalitis (NMDAR-E).
Methods: Protein quantitative trait loci (pQTLs) were obtained from seven published genome-wide association studies (GWASs) focusing on the plasma proteome, resulting in summary-level data for 734 circulating protein markers.
Mol Cell Proteomics
September 2025
Systems Biology Initiative, School of Biotechnology & Biomolecular Sciences, UNSW Sydney, Australia; ARC Centre of Excellence for the Mathematical Analysis of Cellular Systems, UNSW Sydney, Australia. Electronic address:
Phosphorylation of histone lysine demethylases is an important mechanism by which the cell modulates chromatin dynamics to regulate its response to stress. There is evidence that the Saccharomyces cerevisiae H3K36me2/3 demethylase, Rph1p, is an integrator of many signalling events. However, the regulatory function of most Rph1p phosphosites in stress response pathways remains unknown.
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