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人核糖体 P1-P2 异二聚体代表蓖麻毒素 A 链的最佳对接位点,其中 P1 C 末端起主要作用。

Human ribosomal P1-P2 heterodimer represents an optimal docking site for ricin A chain with a prominent role for P1 C-terminus.

机构信息

Department of Plant Biology, School of Environmental and Biological Sciences, Rutgers University, New Brunswick, New Jersey, 08901-8520, USA.

Department of Molecular Biology, Maria Curie-Skłodowska University, Akademicka 19, 20-033, Lublin, Poland.

出版信息

Sci Rep. 2017 Jul 17;7(1):5608. doi: 10.1038/s41598-017-05675-5.

Abstract

The eukaryotic P-stalk contains two P1-P2 protein dimers with a conserved C- terminal domain (CTD) critical for the interaction with external factors. To understand the role of the individual CTD of human P1/P2 proteins, we examined the interaction of reconstituted human P-protein complexes and C-terminally truncated forms with ricin A chain (RTA), which binds to the stalk to depurinate the sarcin/ricin loop (SRL). The interaction between P-protein complexes and RTA was examined by surface plasmon resonance, isothermal titration calorimetry, microscale thermophoresis and bio-layer interferometry. The P1-P2 heterodimer missing a CTD on P2 was able to bind RTA. In contrast, the P1-P2 heterodimer missing the CTD of P1 protein displayed almost no binding toward RTA. Very low interaction was detected between RTA and the non-truncated P2-P2 homodimer, suggesting that the structural architecture of the P1-P2 heterodimer is critical for binding RTA. The reconstituted pentameric human stalk complex had higher affinity for RTA than the P1-P2 dimer. Deletion of P1 CTD, but not P2 CTD reduced the affinity of the pentamer for RTA. These results highlight the importance of the heterodimeric organization of P1-P2 in the human stalk pentamer and functional non-equivalence of the individual P-protein CTDs in the interaction with RTA.

摘要

真核生物 P stalk 包含两个 P1-P2 蛋白二聚体,其 C 端结构域(CTD)对于与外部因素相互作用至关重要。为了了解人 P1/P2 蛋白的单个 CTD 的作用,我们研究了重组人 P 蛋白复合物与 C 端截断形式与蓖麻毒素 A 链(RTA)的相互作用,RTA 与 stalk 结合以脱嘌呤 sarcin/ricin 环(SRL)。通过表面等离子体共振、等温滴定量热法、微尺度热泳和生物层干涉法检查 P 蛋白复合物与 RTA 的相互作用。缺少 P2 上 CTD 的 P1-P2 异二聚体能够结合 RTA。相比之下,缺少 P1 蛋白 CTD 的 P1-P2 异二聚体对 RTA 的结合几乎没有显示。在 RTA 和未截断的 P2-P2 同源二聚体之间检测到非常低的相互作用,这表明 P1-P2 异二聚体的结构构象对于结合 RTA 至关重要。与 P1-P2 二聚体相比,重组的五聚体人 stalk 复合物对 RTA 具有更高的亲和力。删除 P1 CTD,但不是 P2 CTD,降低了五聚体对 RTA 的亲和力。这些结果强调了 P1-P2 异二聚体在人 stalk 五聚体中的重要性以及单个 P 蛋白 CTD 在与 RTA 相互作用中的功能不等效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f9f/5514047/76f1b865bafb/41598_2017_5675_Fig1_HTML.jpg

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