αβ t细胞受体机械感知的生物物理和结构特征:理解t细胞激活的范式转变。

IF 7.5 2区 医学 Q1 IMMUNOLOGY
Robert J. Mallis, Kristine N. Brazin, Jonathan S. Duke-Cohan, Aoi Akitsu, Hanna M. Stephens, Ana C. Chang-Gonzalez, Daniel J. Masi, Evan H. Kirkpatrick, Elizabeth L. Holliday, Yinnian Feng, Katarzyna J. Zienkiewicz, Jonathan J. Lee, Vincenzo Cinella, Kaveri I. Uberoy, Kemin Tan, Gerhard Wagner, Haribabu Arthanari, Wonmuk Hwang, Matthew J. Lang, Ellis L. Reinherz
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引用次数: 0

摘要

αβT细胞保护脊椎动物免受许多疾病的侵害,利用机械力优化监测,以区分病理生理细胞改变和正常的自身成分。多亚单位αβ t细胞受体(TCR)在热平衡之外运作,通过t细胞运动和肌动蛋白-肌球蛋白机制产生的物理力收集能量。当抗原呈递细胞上的肽结合的主要组织相容性复合体分子(pMHC)结联时,T细胞上的αβTCR利用力形成捕获键,延长键寿命,增强抗原识别。在负荷下,αβTCR经历可逆的结构转变,包括其克隆型免疫球蛋白样(Ig)结构域的部分展开和相关CD3亚基和结构元件的偶联重排。我们假设,通过诱导αβTCR四级结构重排、相关的膜扰动、CD3 ITAMs暴露于非受体酪氨酸激酶的磷酸化以及信号分子的相分离,这些转变为启动信号级联提供了关键能量。了解αβTCR的力介导信号,澄清了长期存在的关于αβTCR抗原识别、特异性和亲和力的问题,为进一步研究提供了基础。未来的研究方向包括αβTCR信号启动的原子机制、性能质量、组织顺应性适应性和t细胞记忆命运。机械转导范式将促进基于t细胞的疫苗、car - t和过继疗法的合理设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biophysical and Structural Features of αβT-Cell Receptor Mechanosensing: A Paradigmatic Shift in Understanding T-Cell Activation

αβT cells protect vertebrates against many diseases, optimizing surveillance using mechanical force to distinguish between pathophysiologic cellular alterations and normal self-constituents. The multi-subunit αβT-cell receptor (TCR) operates outside of thermal equilibrium, harvesting energy via physical forces generated by T-cell motility and actin-myosin machinery. When a peptide-bound major histocompatibility complex molecule (pMHC) on an antigen presenting cell is ligated, the αβTCR on the T cell leverages force to form a catch bond, prolonging bond lifetime, and enhancing antigen discrimination. Under load, the αβTCR undergoes reversible structural transitions involving partial unfolding of its clonotypic immunoglobulin-like (Ig) domains and coupled rearrangements of associated CD3 subunits and structural elements. We postulate that transitions provide critical energy to initiate the signaling cascade via induction of αβTCR quaternary structural rearrangements, associated membrane perturbations, exposure of CD3 ITAMs to phosphorylation by non-receptor tyrosine kinases, and phase separation of signaling molecules. Understanding force-mediated signaling by the αβTCR clarifies long-standing questions regarding αβTCR antigen recognition, specificity and affinity, providing a basis for continued investigation. Future directions include examining atomistic mechanisms of αβTCR signal initiation, performance quality, tissue compliance adaptability, and T-cell memory fate. The mechanotransduction paradigm will foster improved rational design of T-cell based vaccines, CAR-Ts, and adoptive therapies.

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来源期刊
Immunological Reviews
Immunological Reviews 医学-免疫学
CiteScore
16.20
自引率
1.10%
发文量
118
审稿时长
4-8 weeks
期刊介绍: Immunological Reviews is a specialized journal that focuses on various aspects of immunological research. It encompasses a wide range of topics, such as clinical immunology, experimental immunology, and investigations related to allergy and the immune system. The journal follows a unique approach where each volume is dedicated solely to a specific area of immunological research. However, collectively, these volumes aim to offer an extensive and up-to-date overview of the latest advancements in basic immunology and their practical implications in clinical settings.
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