Sturrock Grace R, Robison Amy T R, Dharani Azim, Monson Eric E, Franz Katherine J, Fitzgerald Michael C
Department of Chemistry, Duke University, Durham, North Carolina, USA.
Center for Data and Visualization Sciences, Duke University, Durham, North Carolina, USA.
Protein Sci. 2025 Jun;34(6):e70158. doi: 10.1002/pro.70158.
The susceptibility of a protein to aggregation upon exposure to copper ions (Cu) has been recognized as a contributor to Cu-induced cellular dysfunction and toxicity. Different cell types succumb to Cu to varying degrees, indicating innate differences between species in the mechanisms used to tolerate exposure to Cu in excess of their biological needs. Investigated here are properties associated with metal-induced protein precipitation (MiPP) compared across cell lysates generated from three cell lines from three different species: Escherichia coli, Candida albicans, and the human prostate cancer cell line 22Rv1. The human cell line was the most sensitive to Cu-induced protein precipitation, while C. albicans was the most tolerant. This trend aligns with the relative susceptibilities of these cells to Cu-induced cytotoxicity. The unique susceptibilities of these proteomes to precipitation by Cu were examined to identify factors that influence a protein's relative sensitivity to this effect. Identified were intrinsic factors such as frequency and solvent accessibility of known metal-binding amino acids, as well as external factors related to the molecular composition of their native cell lysates. Overall, our findings help to elucidate the biomolecular basis underpinning the unique capacity of adventitious Cu to have differential effects on eukaryotic and prokaryotic organisms and the level of Cu needed to induce protein precipitation.
蛋白质在暴露于铜离子(Cu)时发生聚集的敏感性已被认为是导致铜诱导的细胞功能障碍和毒性的一个因素。不同的细胞类型对铜的耐受程度不同,这表明不同物种在耐受超过其生物需求的铜暴露的机制上存在固有差异。本文研究了来自三种不同物种的三种细胞系(大肠杆菌、白色念珠菌和人前列腺癌细胞系22Rv1)的细胞裂解物中与金属诱导的蛋白质沉淀(MiPP)相关的特性。人细胞系对铜诱导的蛋白质沉淀最敏感,而白色念珠菌最耐受。这一趋势与这些细胞对铜诱导的细胞毒性的相对敏感性一致。研究了这些蛋白质组对铜沉淀的独特敏感性,以确定影响蛋白质对这种效应相对敏感性的因素。确定的内在因素包括已知金属结合氨基酸的频率和溶剂可及性,以及与其天然细胞裂解物分子组成相关的外部因素。总的来说,我们的研究结果有助于阐明偶然存在的铜对真核生物和原核生物产生不同影响的独特能力以及诱导蛋白质沉淀所需的铜水平的生物分子基础。