In silico insights on tankyrase protein: A potential target for colorectal cancer

2018 ◽  
Vol 37 (14) ◽  
pp. 3637-3648 ◽  
Author(s):  
Lakshmanan Loganathan ◽  
Karthikeyan Muthusamy ◽  
John Marshal Jayaraj ◽  
Afrinrilwana Kajamaideen ◽  
Josephine Julia Balthasar
2021 ◽  
Vol 10 (12) ◽  
pp. 2680
Author(s):  
Maria Panagopoulou ◽  
Antonia Cheretaki ◽  
Makrina Karaglani ◽  
Ioanna Balgkouranidou ◽  
Eirini Biziota ◽  
...  

The corticotropin-releasing factor (CRF) system has been strongly associated with gastrointestinal pathophysiology, including colorectal cancer (CRC). We previously showed that altered expression of CRF receptors (CRFRs) in the colon critically affects CRC progression and aggressiveness through regulation of colonic inflammation. Here, we aimed to assess the potential of CRFR methylation levels as putative biomarkers in CRC. In silico methylation analysis of CRF receptor 1 (CRFR1) and CRF receptor 2 (CRFR2) was performed using methylome data derived by CRC and Crohn’s disease (CD) tissues and CRC-derived circulating cell-free DNAs (ccfDNAs). In total, 32 and 33 differentially methylated sites of CpGs (DMCs) emerged in CRFR1 and CRFR2, respectively, between healthy and diseased tissues. The methylation patterns were verified in patient-derived ccfDNA samples by qMSP and associated with clinicopathological characteristics. An automated machine learning (AutoML) technology was applied to ccfDNA samples for classification analysis. In silico analysis revealed increased methylation of both CRFRs in CRC tissue and ccfDNA-derived datasets. CRFR1 hypermethylation was also noticed in gene body DMCs of CD patients. CRFR1 hypermethylation was further validated in CRC adjuvant-derived ccfDNA samples, whereas CRFR1 hypomethylation, observed in metastasis-derived ccfDNAs, was correlated to disease aggressiveness and adverse prognostic characteristics. AutoML analysis based on CRFRs methylation status revealed a three-feature high-performing biosignature for CRC diagnosis with an estimated AUC of 0.929. Monitoring of CRFRs methylation-based signature in CRC tissues and ccfDNAs may be of high diagnostic and prognostic significance in CRC.


2021 ◽  
Vol 22 (6) ◽  
pp. 3160
Author(s):  
Michal Kopczynski ◽  
Malgorzata Statkiewicz ◽  
Magdalena Cybulska ◽  
Urszula Kuklinska ◽  
Katarzyna Unrug-Bielawska ◽  
...  

TNF-related apoptosis-inducing ligand (TRAIL) is a type II transmembrane protein capable of selectively inducing apoptosis in cancer cells by binding to its cognate receptors. Here, we examined the anticancer efficacy of a recently developed chimeric AD-O51.4 protein, a TRAIL fused to the VEGFA-originating peptide. We tested AD-O51.4 protein activity against human colorectal cancer (CRC) models and investigated the resistance mechanism in the non-responsive CRC models. The quantitative comparison of apoptotic activity between AD-O51.4 and the native TRAIL in nine human colorectal cancer cell lines revealed dose-dependent toxicity in seven of them; the immunofluorescence-captured receptor abundance correlated with the extent of apoptosis. AD-O51.4 reduced the growth of CRC patient-derived xenografts (PDXs) with good efficacy. Cell lines that acquired AD-O51.4 resistance showed a significant decrease in surface TRAIL receptor expression and apoptosis-related proteins, including Caspase-8, HSP60, and p53. These results demonstrate the effectiveness of AD-O51.4 protein in CRC preclinical models and identify the potential mechanism underlying acquired resistance. Progression of AD-O51.4 to clinical trials is expected.


2017 ◽  
Vol 152 (5) ◽  
pp. S1018
Author(s):  
Hiroyuki Takamaru ◽  
Yutaka Saito ◽  
Taku Sakamoto ◽  
Seiichiro Abe ◽  
Masayoshi Yamada ◽  
...  

Author(s):  
Hendra Susanto ◽  
Dwi Listyorini ◽  
Ahmad Taufiq ◽  
Viol Dhea Kharisma ◽  
Adeodatus Yuda Handaya ◽  
...  

2013 ◽  
Vol 9 (1) ◽  
pp. 35-45
Author(s):  
Jayadev Joshi ◽  
Tapan K. Barik ◽  
Nitisha Shrivastava ◽  
Manali Dimri ◽  
Subhajit Ghosh ◽  
...  

2018 ◽  
Author(s):  
Michelle H. Townsend ◽  
Eric C. Olsen ◽  
Evita G. Weagel ◽  
Edwin J. Velasquez ◽  
Abigail M. Felsted ◽  
...  

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