Messages in CD40L are encrypted for residue-specific functions

IF 3.7 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Cytokine Pub Date : 2024-11-30 DOI:10.1016/j.cyto.2024.156824
Akshata Bammigatti , Soumya Kanti Ghosh , Syamdas Bandyopadhyay , Bhaskar Saha
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引用次数: 0

Abstract

CD40-CD40-ligand (CD40L) interaction plays crucial immunoregulatory roles, as CD40 signals through different signaling intermediates to convert the messages from CD40L to effector functions. Being a TNFα receptor family member, CD40 binds TNFα receptor-associated factors, assembles signalosome complexes and decrypts the messages from CD40L through different signaling modules to result in residue-specific effector functions. The evidence for such a residue-specific message encryption first came from the CD40L mutations resulting in X-linked hyper-IgM syndrome, as the extent of effects varied with the residue mutated. The structural studies on the CD40-CD40L interaction implied differential involvement of the interacting residues on CD40L in influencing the effector functions. Three lines of evidence indicate the previously implied residue-specific message encryption in CD40L: screening of a dodecameric peptide library for CD40 binders identified two peptides with different sequences resulting in counteractive effector functions in macrophages; a series of CD40L mutants identified that the mutations in these residues selectively affected CD40 signaling and macrophage effector functions; and, a panel of 40-mer peptides, representing the CD40-interacting domain of mouse CD40L, with single substitutions resulted in altered CD40 signaling through various signaling intermediates and effector functions in mouse macrophages. We therefore construct the first-ever message encryption-decryption in a biological receptor-ligand system wherein the CD40L residues that interact with CD40 residues have encrypted messages, which are decoded by CD40 signaling to result in residue-specific effector functions. This review presents a novel perspective of receptor-ligand interaction as a system of message transmission, message decoding by signaling, and its transcription to various read-outs. [250 words].
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CD40L中的消息是针对特定于残留物的功能进行加密的
CD40-CD40-配体(CD40L)相互作用起着至关重要的免疫调节作用,因为CD40通过不同的信号传导中间体将CD40L的信息转化为效应功能。作为TNFα受体家族成员,CD40结合TNFα受体相关因子,组装信号体复合物,并通过不同的信号传导模块解密来自CD40L的信息,从而产生残基特异性效应功能。这种残基特异性信息加密的证据首先来自导致x连锁超igm综合征的CD40L突变,因为影响程度随残基突变而变化。CD40-CD40L相互作用的结构研究表明,CD40L上的相互作用残基对效应分子功能的影响存在差异。三项证据表明,CD40L中存在先前暗示的残基特异性信息加密:筛选CD40结合物的十二聚体肽文库,鉴定出巨噬细胞中具有不同序列的两种肽,从而产生拮抗效应功能;一系列CD40L突变体发现这些残基的突变选择性地影响CD40信号传导和巨噬细胞效应功能;一组40聚肽,代表小鼠CD40L的CD40相互作用域,单次替换导致小鼠巨噬细胞中CD40信号通过各种信号中间体和效应功能发生改变。因此,我们在生物受体-配体系统中构建了第一个信息加密-解密,其中与CD40残基相互作用的CD40L残基加密了信息,这些信息被CD40信号解码,从而产生残基特异性效应函数。这篇综述提出了受体-配体相互作用作为一个信息传递系统的新视角,通过信号解码信息,并将其转录到各种读出。(250字)。
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来源期刊
Cytokine
Cytokine 医学-免疫学
CiteScore
7.60
自引率
2.60%
发文量
262
审稿时长
48 days
期刊介绍: The journal Cytokine has an open access mirror journal Cytokine: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. * Devoted exclusively to the study of the molecular biology, genetics, biochemistry, immunology, genome-wide association studies, pathobiology, diagnostic and clinical applications of all known interleukins, hematopoietic factors, growth factors, cytotoxins, interferons, new cytokines, and chemokines, Cytokine provides comprehensive coverage of cytokines and their mechanisms of actions, 12 times a year by publishing original high quality refereed scientific papers from prominent investigators in both the academic and industrial sectors. We will publish 3 major types of manuscripts: 1) Original manuscripts describing research results. 2) Basic and clinical reviews describing cytokine actions and regulation. 3) Short commentaries/perspectives on recently published aspects of cytokines, pathogenesis and clinical results.
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