Iwasa Yasuyuki, Miyata Sohtaroh, Tomita Takuya, Yokota Naoto, Miyauchi Maho, Mori Ruka, Matsushita Shin, Suzuki Rigel, Saeki Yasushi, Kawahara Hiroyuki
Department of Biological Sciences, Laboratory of Cell Biology and Biochemistry, Tokyo Metropolitan University, Tokyo, Japan.
Department of Protein Metabolism, Institute of Medical Science, The University of Tokyo, Tokyo, Japan.
J Cell Biol. 2025 Mar 3;224(3). doi: 10.1083/jcb.202109010. Epub 2025 Jan 15.
The accumulation of defective polypeptides in cells is a major cause of various diseases. However, probing defective proteins is difficult because no currently available method can retrieve unstable defective translational products in a soluble state. To overcome this issue, there is a need for a molecular device specific to structurally defective polypeptides. In this study, we developed an artificial protein architecture comprising tandemly aligned BAG6 Domain I, a minimum substrate recognition platform responsible for protein quality control. This tandem-aligned entity shows enhanced affinity not only for model defective polypeptides but also for endogenous polyubiquitinated proteins, which are sensitive to translational inhibition. Mass-spectrometry analysis with this probe enabled the identification of endogenous defective proteins, including orphaned subunits derived from multiprotein complexes and misassembled transmembrane proteins. This probe is also useful for the real-time visualization of protein foci derived from defective polypeptides in stressed cells. Therefore, this "new molecular trap" is a versatile tool for evaluating currently "invisible" pools of defective polypeptides as tangible entities.
细胞中缺陷多肽的积累是多种疾病的主要原因。然而,探测缺陷蛋白很困难,因为目前没有可用的方法能够检索处于可溶状态的不稳定缺陷翻译产物。为克服这一问题,需要一种针对结构缺陷多肽的分子装置。在本研究中,我们开发了一种人工蛋白质架构,它由串联排列的BAG6结构域I组成,这是一个负责蛋白质质量控制的最小底物识别平台。这种串联排列的实体不仅对模型缺陷多肽显示出增强的亲和力,而且对内源多聚泛素化蛋白也有增强的亲和力,这些蛋白对翻译抑制敏感。使用该探针进行质谱分析能够鉴定内源性缺陷蛋白,包括来自多蛋白复合物的孤立亚基和错误组装的跨膜蛋白。该探针对于实时可视化应激细胞中由缺陷多肽形成的蛋白聚集体也很有用。因此,这种“新型分子陷阱”是一种通用工具,可将目前“不可见”的缺陷多肽池评估为有形实体。