Sun Wenjing, Song Junying, Wu Qinglan, Deng Lin, Zhang Tenglong, Zhang Li, Hua Yanan, Cao Yi, Hou Lin
Department of Biochemistry and Molecular Biology, School of Basic Medicine, Qingdao University, Qingdao 266011, China.
Wanzhou District Center for Disease Control, Chongqing 404100, China.
Molecules. 2024 Feb 28;29(5):1051. doi: 10.3390/molecules29051051.
Regulator of ribosome synthesis 1 (RRS1), a crucial regulatory factor in ribosome biogenesis, exerts a remarkable impact on the progression of breast cancer (BC). However, the exact mechanisms and pathways have not yet been fully elucidated. To investigate the impact of RRS1 on BC growth and metastasis, along with its underlying mechanisms. We discovered that RRS1 is overexpressed in BC tissues and cell lines. This study aims to regulate the level of RRS1 through lentiviral transfection technology to explore its potential function in BC cells. Knockdown of RRS1 resulted in the inhibition of cell proliferation, invasion, and migration, whereas overexpression had the opposite effects. We firstly identified the interaction between RRS1 and Glucose-Regulated Protein 78 (GRP78) using Co-immunoprecipitation (Co-IP) combined with mass spectrometry analysis, providing evidences of co-localization and positive regulation between RRS1 and GRP78. We observed that RRS1 inhibited the degradation of GRP78 through the ubiquitin-proteasome pathway, resulting in the stabilization of GRP78. In addition, our findings suggested that RRS1 promoted BC progression by activating the GRP78-mediated phosphoinositide 3-kinase (PI3K)/protein kinase B (AKT) signaling pathway. In conclusion, this newly discovered RRS1/GRP78 signaling axis provides a molecular and theoretical basis for further exploring the mechanisms of breast cancer invasion and metastasis.
核糖体合成调节因子1(RRS1)是核糖体生物合成中的关键调节因子,对乳腺癌(BC)的进展具有显著影响。然而,确切的机制和途径尚未完全阐明。为了研究RRS1对BC生长和转移的影响及其潜在机制。我们发现RRS1在BC组织和细胞系中过表达。本研究旨在通过慢病毒转染技术调节RRS1的水平,以探索其在BC细胞中的潜在功能。敲低RRS1导致细胞增殖、侵袭和迁移受到抑制,而过表达则产生相反的效果。我们首先使用免疫共沉淀(Co-IP)结合质谱分析鉴定了RRS1与葡萄糖调节蛋白78(GRP78)之间的相互作用,提供了RRS1与GRP78共定位和正向调节的证据。我们观察到RRS1通过泛素-蛋白酶体途径抑制GRP78的降解,从而导致GRP78的稳定。此外,我们的研究结果表明,RRS1通过激活GRP78介导的磷酸肌醇3激酶(PI3K)/蛋白激酶B(AKT)信号通路促进BC进展。总之,这个新发现的RRS1/GRP78信号轴为进一步探索乳腺癌侵袭和转移机制提供了分子和理论基础。