Pages that link to "Q45091981"
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The following pages link to Overexpression of m-calpain in human colorectal adenocarcinomas (Q45091981):
Displaying 32 items.
- Fusoselect: cell-cell fusion activity engineered by directed evolution of a retroviral glycoprotein. (Q25256213) (← links)
- Proteolysis of the human DNA polymerase delta smallest subunit p12 by μ-calpain in calcium-triggered apoptotic HeLa cells (Q28237256) (← links)
- Calpain-mediated proteolysis of paxillin negatively regulates focal adhesion dynamics and cell migration (Q30427752) (← links)
- ERK regulates calpain 2-induced androgen receptor proteolysis in CWR22 relapsed prostate tumor cell lines (Q33593873) (← links)
- Oncogenic ras-induced down-regulation of autophagy mediator Beclin-1 is required for malignant transformation of intestinal epithelial cells (Q33648384) (← links)
- Pathway Analysis for Genome-Wide Association Study of Basal Cell Carcinoma of the Skin (Q33987838) (← links)
- Inferring serum proteolytic activity from LC-MS/MS data (Q34248132) (← links)
- Astragalus saponins modulates colon cancer development by regulating calpain-mediated glucose-regulated protein expression. (Q34410183) (← links)
- Calpain 2 is required for glioblastoma cell invasion: regulation of matrix metalloproteinase 2. (Q34425717) (← links)
- The calpain/calpastatin system has opposing roles in growth and metastatic dissemination of melanoma. (Q34658476) (← links)
- Calpains as potential anti-cancer targets (Q34793288) (← links)
- Integrated network analysis and logistic regression modeling identify stage-specific genes in Oral Squamous Cell Carcinoma (Q35693163) (← links)
- Calpain 2 is required for the invasion of glioblastoma cells in the zebrafish brain microenvironment. (Q35742619) (← links)
- Calpain 2 regulates Akt-FoxO-p27(Kip1) protein signaling pathway in mammary carcinoma (Q35939817) (← links)
- BRCA1 deficiency in ovarian cancer is associated with alteration in expression of several key regulators of cell motility - A proteomics study. (Q36189172) (← links)
- Prolonged androgen deprivation leads to overexpression of calpain 2: implications for prostate cancer progression (Q37504520) (← links)
- Functional validation of a human CAPN5 exome variant by lentiviral transduction into mouse retina (Q37708377) (← links)
- The calpain system and cancer. (Q37867486) (← links)
- Calcium-induced cleavage of DNA topoisomerase I involves the cytoplasmic-nuclear shuttling of calpain 2. (Q39630331) (← links)
- Ex-vivo characterization of circulating colon cancer cells distinguished in stem and differentiated subset provides useful biomarker for personalized metastatic risk assessment (Q39768670) (← links)
- SK3/TRPC1/Orai1 complex regulates SOCE-dependent colon cancer cell migration: a novel opportunity to modulate anti-EGFR mAb action by the alkyl-lipid Ohmline (Q39832417) (← links)
- Network-based analysis of calcium-binding protein genes identifies Grp94 as a target in human oral carcinogenesis (Q40088141) (← links)
- Calcium influx-mediated translocation of m-calpain induces Ku80 cleavage and enhances the Ku80-related DNA repair pathway. (Q41418176) (← links)
- Comparison of the protein expression of calpain-1, calpain-2, calpastatin and calmodulin between gastric cancer and normal gastric mucosa (Q41616336) (← links)
- New localization and function of calpain-2 in nucleoli of colorectal cancer cells in ribosomal biogenesis: effect of KRAS status (Q51744124) (← links)
- Calpastatin phosphorylation regulates radiation-induced calpain activity in glioblastoma. (Q54981629) (← links)
- Calpain-2 Enhances Non-Small Cell Lung Cancer Progression and Chemoresistance to Paclitaxel via EGFR-pAKT Pathway (Q60920147) (← links)
- CAPN1 is a novel binding partner and regulator of the tumor suppressor NF1 in melanoma (Q64122699) (← links)
- Lack of effect of acute enteral arginine infusion on whole-body and intestinal protein metabolism in humans (Q80093993) (← links)
- Precise Prediction of Calpain Cleavage Sites and Their Aberrance Caused by Mutations in Cancer (Q92800484) (← links)
- 1,4-dihydroxy quininib attenuates growth of colorectal cancer cells and xenografts and regulates the TIE-2 signaling pathway in patient tumours (Q92887519) (← links)
- miR-124 Intensified Oxaliplatin-Based Chemotherapy by Targeting CAPN2 in Colorectal Cancer (Q94554686) (← links)