Abstract B169: Engineering phase separation of multivalent signaling proteins through the solubility of folded protein domains

Jonggul Kim, J. Ditlev, M. Rosen
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Abstract

Similar to three-dimensional membraneless organelles, it has been demonstrated that T-cell LAT signaling clusters form through multi-valency driven phase separation. This phase separated cluster was found to promote Arp2/3-complex driven actin assembly in vitro and correlated with increased ERK phosphorylation in cells. However, in this initial study, perturbations used to study phase separation also affect interactions known to be important for T-cell signaling, convoluting the impact of phase separation on signaling with effects due to changes in canonical biochemical interactions. To understand more precisely the role of phase separation in T-cell signaling, I will alter the solubility of folded domains through mutations of surface charged residues to modulate their phase separation propensities, independent of their high-affinity ligand binding interactions. To demonstrate the validity of this approach, I have first applied it to a synthetic system, based on multivalent interactions between the small ubiquitin-like modifier (SUMO) and the SUMO interaction motif (SIM), which will enable us to provide design principles that can be used on T-cell receptor signaling proteins. I demonstrate that it is possible to specifically alter the solubility of folded domains without altering their canonical molecular interactions. The solubility of individual folded domains serves as a predictor of the concentration threshold of phase separation, and phase separation can either be enhanced or abolished with a single mutation. Principles gained from this work on SUMO/SIM will be applied to multivalent proteins involved T-cell receptor signaling, namely Grb2 and Nck1, and the relationship between phase separation and signaling will be firmly established with future implications for rational engineering of T-cells. Citation Format: Jonggul Kim, Jonathon Ditlev, Michael K. Rosen. Engineering phase separation of multivalent signaling proteins through the solubility of folded protein domains [abstract]. In: Proceedings of the Fourth CRI-CIMT-EATI-AACR International Cancer Immunotherapy Conference: Translating Science into Survival; Sept 30-Oct 3, 2018; New York, NY. Philadelphia (PA): AACR; Cancer Immunol Res 2019;7(2 Suppl):Abstract nr B169.
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B169:通过折叠蛋白结构域的溶解性实现多价信号蛋白的工程相分离
与三维无膜细胞器类似,已经证明t细胞LAT信号簇是通过多价驱动的相分离形成的。在体外实验中发现,这种相分离簇促进arp2 /3复合物驱动的肌动蛋白组装,并与细胞中ERK磷酸化增加相关。然而,在这项初步研究中,用于研究相分离的扰动也会影响已知对t细胞信号传导很重要的相互作用,使相分离对信号传导的影响与典型生化相互作用的变化相混淆。为了更准确地理解相分离在t细胞信号传导中的作用,我将通过表面带电残基的突变来改变折叠结构域的溶解度,以调节它们的相分离倾向,而不依赖于它们的高亲和力配体结合相互作用。为了证明这种方法的有效性,我首先将其应用于一个基于小泛素样修饰物(SUMO)和SUMO相互作用基序(SIM)之间多价相互作用的合成系统,这将使我们能够提供可用于t细胞受体信号蛋白的设计原则。我证明有可能在不改变其典型分子相互作用的情况下特异性地改变折叠结构域的溶解度。单个折叠结构域的溶解度可以作为相分离浓度阈值的预测因子,并且通过单个突变可以增强或消除相分离。从SUMO/SIM工作中获得的原理将应用于涉及t细胞受体信号传导的多价蛋白,即Grb2和Nck1,并且相分离和信号传导之间的关系将牢固地建立起来,未来对t细胞的合理工程具有重要意义。引文格式:Jonggul Kim, Jonathon Ditlev, Michael K. Rosen。通过折叠蛋白结构域的溶解度实现多价信号蛋白的工程相分离[摘要]。第四届CRI-CIMT-EATI-AACR国际癌症免疫治疗会议:将科学转化为生存;2018年9月30日至10月3日;纽约,纽约。费城(PA): AACR;癌症免疫学杂志,2019;7(2增刊):摘要nr B169。
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