RNF7 knockdown inhibits prostate cancer tumorigenesis by inactivation of ERK1/2 pathway
SCIENTIFIC REPORTS
Authors: Xiao, Yangjiong; Jiang, Yan; Song, Hongmei; Liang, Tao; Li, Yonghui; Yan, Dongliang; Fu, Qiang; Li, Zuowei
Abstract
Development of castration resistance is a key contributor to mortality in patients with prostate cancer. High expression of RING finger protein 7 (RNF7) in cancer cells is known to play a key role in tumor progression. However, the role of RNF7 in prostate cancer progression is not well elucidated. In this study, we silenced RNF7 by shRNA interference in two castration resistant prostate cancer (CRPC) cell lines, DU145 and PC3. RNF7 knockdown attenuated proliferation and enhanced sensitivity of prostate cancer cells to cisplatin treatment. Invasive property of DU145 and PC3 cells was also attenuated by RNF7 silencing. The underlying mechanisms appear to be associated with accumulation of tumor suppressive proteins p21, p27 and NOXA, while inactivation of ERK1/2 by RNF7 knockdown. We demonstrated that RNF7 knockdown induced growth suppression of prostate cancer cells and inactivated ERK1/2 pathway, which suggested RNF7 might be a potential novel therapeutic target for CRPC.
Genome-Wide Association Study Identifies Variants Associated With Progression of Liver Fibrosis From HCV Infection
GASTROENTEROLOGY
Authors: Patin, Etienne; Kutalik, Zoltan; Guergnon, Julien; Bibert, Stephanie; Nalpas, Bertrand; Jouanguy, Emmanuelle; Munteanu, Mona; Bousquet, Laurence; Argiro, Laurent; Halfon, Philippe; Boland, Anne; Muellhaupt, Beat; Semela, David; Dufour, Jean-Francois; Heim, Markus H.; Moradpour, Darius; Cerny, Andreas; Malinverni, Raffaele; Hirsch, Hans; Martinetti, Gladys; Suppiah, Vijayaprakash; Stewart, Graeme; Booth, David R.; George, Jacob; Casanova, Jean-Laurent; Brechot, Christian; Rice, Charles M.; Talal, Andrew H.; Jacobson, Ira M.; Bourliere, Marc; Theodorou, Ioannis; Poynard, Thierry; Negro, Francesco; Pol, Stanislas; Bochud, Pierre-Yves; Abel, Laurent
Abstract
BACKGROUND & AIMS: Polymorphisms in IL28B were shown to affect clearance of hepatitis C virus (HCV) infection in genome-wide association (GWA) studies. Only a fraction of patients with chronic HCV infection develop liver fibrosis, a process that might also be affected by genetic factors. We performed a 2-stage GWA study of liver fibrosis progression related to HCV infection. METHODS: We studied well-characterized HCV-infected patients of European descent who underwent liver biopsies before treatment. We defined various liver fibrosis phenotypes on the basis of METAVIR scores, with and without taking the duration of HCV infection into account. Our GWA analyses were conducted on a filtered primary cohort of 1161 patients using 780,650 single nucleotide polymorphisms (SNPs). We genotyped 96 SNPs with P values <5 x 10(-5) from an independent replication cohort of 962 patients. We then assessed the most interesting replicated SNPs using DNA samples collected from 219 patients who participated in separate GWA studies of HCV clearance. RESULTS: In the combined cohort of 2342 HCV-infected patients, the SNPs rs16851720 (in the total sample) and rs4374383 (in patients who received blood transfusions) were associated with fibrosis progression (P-combined = 8.9 x 10(-9) and 1.1 x 10(-9), respectively). The SNP rs16851720 is located within RNF7, which encodes an antioxidant that protects against apoptosis. The SNP rs4374383, together with another replicated SNP, rs9380516 (P-combined = 5.4 x 10(-7)), were linked to the functionally related genes MERTK and TULP1, which encode factors involved in phagocytosis of apoptotic cells by macrophages. CONCLUSIONS: Our GWA study identified several susceptibility loci for HCV-induced liver fibrosis; these were linked to genes that regulate apoptosis. Apoptotic control might therefore be involved in liver fibrosis.