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核糖体失活蛋白中保守性中和表位的预测

Prediction of a conserved, neutralizing epitope in ribosome-inactivating proteins.

作者信息

Lebeda F J, Olson M A

机构信息

Department of Cell Biology and Biochemistry, US Army Medical Research Institute of Infectious Diseases, Frederick, MD 21702-5011, USA.

出版信息

Int J Biol Macromol. 1999 Jan;24(1):19-26. doi: 10.1016/s0141-8130(98)00059-2.

Abstract

The secondary structures, side-chain solvent accessibilities, and superpositioned crystal structures of the A-chain of ricin and four other plant rRNA N-glycosidases (ribosome-inactivating proteins, RIPs) were examined. Previously, a 26-residue fragment from the A-chain of ricin was determined to bind to a neutralizing monoclonal antibody. The region in the native ricin A-chain, to which this peptide corresponds, is solvent-exposed and contains a negatively charged residue that has been hypothesized to participate in the toxin's function, namely, rRNA binding and/or enzymatic activity. This region appears to be conserved in all of the structurally defined plant RIPs examined. Moreover, other plant RIPs, whose tertiary structures are, as yet, unknown, were predicted to have an analogous, solvent-exposed region containing a conserved, negatively charged residue. By analogy, these conserved structural and functional features lead to the suggestion that this exposed region represents a logical starting point for experiments designed to locate neutralizing epitopes in these RIPs. In contrast, the tertiary structure of the analogous region in a bacteria-derived RIP (Shiga toxin) is a less solvent-exposed, truncated loop and is a structure that is not as likely to be a neutralizing epitope. Because most of the amino acid residues are not conserved within this exposed region, these RIPs are predicted to be antigenically distinct.

摘要

研究了蓖麻毒素A链以及其他四种植物rRNA N-糖苷酶(核糖体失活蛋白,RIPs)的二级结构、侧链溶剂可及性和叠加晶体结构。此前,已确定来自蓖麻毒素A链的一个26个残基的片段可与一种中和性单克隆抗体结合。在天然蓖麻毒素A链中,该肽段对应的区域是溶剂暴露的,并且包含一个带负电荷的残基,据推测该残基参与毒素的功能,即rRNA结合和/或酶活性。在所有检测的结构明确的植物RIPs中,该区域似乎是保守的。此外,其他三级结构未知的植物RIPs预计也有一个类似的、溶剂暴露的区域,其中包含一个保守的带负电荷的残基。由此类推,这些保守的结构和功能特征表明,这个暴露区域是设计用于定位这些RIPs中中和表位的实验的合理起点。相比之下,细菌来源的RIP(志贺毒素)中类似区域的三级结构是一个溶剂暴露较少的截短环,不太可能是一个中和表位。由于该暴露区域内的大多数氨基酸残基不保守,预计这些RIPs在抗原性上是不同的。

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