Deletion of Nrip1 Extends Female Mice Longevity, Increases Autophagy, and Delays Cell Senescence
JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES
Authors: Wang, Jinyu; Chen, Xundi; Osland, Jared; Gerber, Skyler J.; Luan, Chao; Delfino, Kristin; Goodwin, Leslie; Yuan, Rong
Abstract
Using age of female sexual maturation as a biomarker, we previously identified nuclear receptor interacting protein 1 (Nrip1) as a candidate gene that may regulate aging and longevity. In the current report, we found that the deletion of Nrip l can significantly extend longevity of female mice (log-rank test, p = .0004). We also found that Nrip1 expression is altered differently in various tissues during aging and under diet restriction. Remarkably, Nrip1 expression is elevated with aging in visceral white adipose tissue (WAT), but significantly reduced after 4 months of diet restriction. However, in gastrocnemius muscle, Nrip1 expression is significantly upregulated after the diet restriction. In mouse embryonic fibroblasts, we found that the deletion of Nrip1 can suppress fibroblast proliferation, enhance autophagy under normal culture or amino acid starvation conditions, as well as delay oxidative and replicative senescence. Importantly, in WAT of old animals, the deletion of the Nrip could significantly upregulate autophagy and reduce the number of senescent cells. These results suggest that deleting Nrip1 can extend female longevity, but tissue-specific deletion may have varying effects on health span. The deletion of Nrip1 in WAT may delay senescence in WAr and extend health span.
NOP14 suppresses breast cancer progression by inhibiting NRIP1/Wnt/beta-catenin pathway
ONCOTARGET
Authors: Lei, Jin-Ju; Peng, Rou-Jun; Kuang, Bo-Hua; Yuan, Zhong-Yu; Qin, Tao; Liu, Wen-Sheng; Guo, Yun-Miao; Han, Hui-Qiong; Lian, Yi-Fan; Deng, Cheng-Cheng; Zhang, Hao-Jiong; Chen, Li-Zhen; Feng, Qi-Sheng; Xu, Miao; Feng, Lin; Bei, Jin-Xin; Zeng, Yi-Xin
Abstract
NOP14, which is functionally conserved among eukaryotes, has been implicated in cancer development. Here, we show that NOP14 is poorly expressed in breast cancer cells and invasive breast cancer tissues. In vivo and in vitro studies indicated that NOP14 suppressed the tumorigenesis and metastasis of breast cancer cells. Further investigations revealed that NOP14 enhanced ER alpha expression and inhibited the Wnt/beta-catenin pathway by up-regulating NRIP1 expression. Survival analysis indicated that low NOP14 expression was significantly associated with poor overall survival (P = 0.0006) and disease-free survival (P = 0.0007), suggesting that NOP14 is a potential prognostic factor in breast cancer. Taken together, our findings reveal that NOP14 may suppress breast cancer progression and provide new insights into the development of targeted therapeutic agents for breast cancer.