Shang Xiaoyue, Bartels Nina, Weck Johann Moritz, Suppmann Sabine, Basquin Jérôme, Thaventhiran Gajen, Heuer-Jungemann Amelie, Monzel Cornelia
2nd Institute of Physics, University of Stuttgart, Pfaffenwaldring 57, 70569, Stuttgart, Germany.
Experimental Medical Physics, Heinrich Heine University Düsseldorf, Universitätsstraße 1, 40225, Düsseldorf, Germany.
BMC Biotechnol. 2025 Jul 1;25(1):64. doi: 10.1186/s12896-025-00986-2.
Cluster of differentiation 95 (CD95/Fas/Apo1) as part of the Tumor-necrosis factor (TNF) receptor family is a prototypic trigger of the 'extrinsic' apoptotic pathway and its activation by the trimeric ligand CD95L is of high interest. However, CD95L, when presented in solution, exhibits a low efficiency to induce apoptosis signaling in human cells.
Here, we design a recombinant CD95L exhibiting an isoleucine zipper (IZ) motif at the N-terminus for stabilization of the trimerized CD95L and demonstrate its high apoptosis initiation efficiency. This efficiency is further enhanced by antibody-mediated crosslinking of IZ-CD95L.A cysteine amino acid fused behind the IZ is used as a versatile coupling site for bionanotechnological applications or for the development of biomedical assays. A fast, cheap, and efficient production of CD95L via the HEK293T secretory expression system is presented, along with CD95L affinity purification and functionalization. We verified the biological activity of the purified protein and identified a stabilized trimeric CD95L structure as the most potent inducer of apoptosis signaling.
The workflow and the findings reported here will streamline a wide array of future low- or high-throughput TNF-ligand screens, and their modification towards improving apoptosis induction efficiency and, potentially, anticancer therapy.
分化簇95(CD95/Fas/Apo1)作为肿瘤坏死因子(TNF)受体家族的一部分,是“外源性”凋亡途径的典型触发因子,其三聚体配体CD95L对其激活备受关注。然而,CD95L在溶液中时,诱导人类细胞凋亡信号的效率较低。
在此,我们设计了一种在N端具有异亮氨酸拉链(IZ)基序的重组CD95L,用于稳定三聚化的CD95L,并证明其具有高凋亡起始效率。抗体介导的IZ-CD95L交联进一步提高了这种效率。IZ后面融合的半胱氨酸氨基酸用作生物纳米技术应用或生物医学检测开发的通用偶联位点。介绍了通过HEK293T分泌表达系统快速、廉价且高效地生产CD95L的方法,以及CD95L的亲和纯化和功能化。我们验证了纯化蛋白的生物活性,并确定稳定的三聚体CD95L结构是凋亡信号最有效的诱导剂。
本文报道的工作流程和研究结果将简化未来一系列低通量或高通量TNF配体筛选,以及为提高凋亡诱导效率和潜在的抗癌治疗而对其进行的修饰。