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Transition state analogues in structures of ricin and saporin ribosome-inactivating proteins

机译:蓖麻毒素和saporin核糖体失活蛋白的结构中的过渡态类似物

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摘要

Ricin A-chain (RTA) and saporin-L1 (SAP) catalyze adenosine depurination of 28S rRNA to inhibit protein synthesis and cause cell death. We present the crystal structures of RTA and SAP in complex with transition state analogue inhibitors. These tight-binding inhibitors mimic the sarcin–ricin recognition loop of 28S rRNA and the dissociative ribocation transition state established for RTA catalysis. RTA and SAP share unique purine-binding geometry with quadruple π-stacking interactions between adjacent adenine and guanine bases and 2 conserved tyrosines. An arginine at one end of the π-stack provides cationic polarization and enhanced leaving group ability to the susceptible adenine. Common features of these ribosome-inactivating proteins include adenine leaving group activation, a remarkable lack of ribocation stabilization, and conserved glutamates as general bases for activation of the H2O nucleophile. Catalytic forces originate primarily from leaving group activation evident in both RTA and SAP in complex with transition state analogues.
机译:蓖麻蛋白A链(RTA)和saporin-L1(SAP)催化28S rRNA的腺苷脱嘌呤,从而抑制蛋白质合成并导致细胞死亡。我们介绍了过渡态类似物抑制剂与RTA和SAP的晶体结构。这些紧密结合的抑制剂模拟了28S rRNA的sarcin-ricin识别环和为RTA催化建立的解离核糖转移过渡状态。 RTA和SAP具有独特的嘌呤结合几何结构,相邻的腺嘌呤和鸟嘌呤碱基与2个保守的酪氨酸之间具有四重π堆积相互作用。在π-叠层的一端的精氨酸提供阳离子极化并增强了易感腺嘌呤的离去基团能力。这些核糖体失活蛋白的共同特征包括腺嘌呤离去基团激活,明显缺乏核糖稳定作用,以及保守的谷氨酸盐作为激活H2O亲核试剂的一般基础。催化力主要来自在RTA和SAP中与过渡态类似物复合时留下明显的基团活化作用。

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