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解析前 NGFR 结合 p75NTR 和分选连接蛋白的分子与结构研究

Molecular and structural insight into proNGF engagement of p75NTR and sortilin.

机构信息

Department of Cellular and Molecular Physiology, Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

J Mol Biol. 2010 Mar 5;396(4):967-84. doi: 10.1016/j.jmb.2009.12.030. Epub 2009 Dec 28.

Abstract

Nerve growth factor (NGF) is initially synthesized as a precursor, proNGF, that is cleaved to release its C-terminal mature form. Recent studies suggested that proNGF is not an inactive precursor but acts as a signaling ligand distinct from its mature counterpart. proNGF and mature NGF initiate opposing biological responses by utilizing both distinct and shared receptor components. In this study, we carried out structural and biochemical characterization of proNGF interactions with p75NTR and sortilin. We crystallized proNGF complexed to p75NTR and present the structure at 3.75-A resolution. The structure reveals a 2:2 symmetric binding mode, as compared with the asymmetric structure of a previously reported crystal structure of mature NGF complexed to p75NTR and the 2:2 symmetric complex of neurotrophin-3 (NT-3) and p75NTR. Here, we discuss the possible origins and implications of the different stoichiometries. In the proNGF-p75NTR complex, the pro regions of proNGF are mostly disordered and two hairpin loops (loop 2) at the top of the NGF dimer have undergone conformational changes in comparison with mature NT structures, suggesting possible interactions with the propeptide. We further explored the binding characteristics of proNGF to sortilin using surface plasmon resonance and cell-based assays and determined that calcium ions promote the formation of a stable ternary complex of proNGF-sortilin-p75NTR. These results, together with those of previous structural and mechanistic studies of NT-receptor interactions, suggest the potential for distinct signaling activities through p75NTR mediated by different NT-induced conformational changes.

摘要

神经生长因子(NGF)最初作为前体 proNGF 合成,该前体 proNGF 被切割以释放其 C 末端成熟形式。最近的研究表明,proNGF 不是无活性的前体,而是作为与其成熟对应物不同的信号配体发挥作用。proNGF 和成熟 NGF 通过利用不同和共享的受体成分,启动相反的生物学反应。在这项研究中,我们对 proNGF 与 p75NTR 和分选蛋白的相互作用进行了结构和生化表征。我们结晶了与 p75NTR 结合的 proNGF,并呈现出 3.75-A 分辨率的结构。该结构揭示了 2:2 对称的结合模式,与先前报道的成熟 NGF 与 p75NTR 结合的不对称结构以及神经营养因子-3(NT-3)与 p75NTR 的 2:2 对称复合物相比。在这里,我们讨论了不同化学计量的可能起源和影响。在 proNGF-p75NTR 复合物中,proNGF 的 pro 区域大多是无序的,与成熟 NT 结构相比,NGF 二聚体顶部的两个发夹环(环 2)发生了构象变化,这表明可能与前肽相互作用。我们进一步使用表面等离子体共振和基于细胞的测定法研究了 proNGF 与分选蛋白的结合特性,并确定钙离子促进了 proNGF-分选蛋白-p75NTR 稳定三元复合物的形成。这些结果与先前关于 NT-受体相互作用的结构和机制研究的结果一起表明,通过不同的 NT 诱导的构象变化,通过 p75NTR 介导存在独特的信号转导活性的潜力。

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