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白喉毒素B链的一个C末端半胱氨酸参与免疫毒素的细胞穿透及细胞毒性作用。

A C terminus cysteine of diphtheria toxin B chain involved in immunotoxin cell penetration and cytotoxicity.

作者信息

Dell'Arciprete L, Colombatti M, Rappuoli R, Tridente G

机构信息

Istituto di Scienze Immunologiche, University of Verona, Italy.

出版信息

J Immunol. 1988 Apr 1;140(7):2466-71.

PMID:2965187
Abstract

The role of diphtheria toxin (DT) B-chain subdomains in DT cytotoxicity and immunotoxin mechanism of action has been investigated. OKT3 (mAb to the CD3 surface Ag of human T lymphocytes) was conjugated to DT or the DT mutant CRM 1001, which has a cys----tyr substitution at position 471 of the B chain. OKT3-CRM 1001 immunotoxin was about 1400-fold less cytotoxic for CD3 Jurkat cells than OKT3-DT and had a 12-fold slower kinetics of protein synthesis inactivation, CRM 1001 killed DT-sensitive Vero cells at a 5000-fold higher concentration than DT. Its cell surface-binding activity was comparable to DT. Based on kinetics of cell inactivation, toxicity determination at low extracellular pH and Triton X-114 distribution, it was concluded that CRM 1001 is defective in at least one crucial step of toxin penetration and is unable to cross cell membranes as efficiently as DT. The substituted cysteine appears to be important for DT translocating functions. Data on the function of DT B-chain subdomains are relevant for the study of whole toxin conjugates and their mechanism of action.

摘要

已对白喉毒素(DT)B链亚结构域在DT细胞毒性和免疫毒素作用机制中的作用进行了研究。将OKT3(抗人T淋巴细胞CD3表面抗原的单克隆抗体)与DT或DT突变体CRM 1001偶联,后者在B链的471位有一个半胱氨酸到酪氨酸的替换。OKT3-CRM 1001免疫毒素对CD3 Jurkat细胞的细胞毒性比OKT3-DT低约1400倍,蛋白质合成失活的动力学速度慢12倍,CRM 1001杀死DT敏感的Vero细胞的浓度比DT高5000倍。其细胞表面结合活性与DT相当。根据细胞失活动力学、低细胞外pH值下的毒性测定以及Triton X-114分布情况,得出结论:CRM 1001在毒素穿透的至少一个关键步骤中存在缺陷,不能像DT那样有效地穿过细胞膜。被取代的半胱氨酸似乎对DT的转运功能很重要。关于DT B链亚结构域功能的数据与全毒素偶联物及其作用机制的研究相关。

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