Trabjerg Esben, Kartberg Fredrik, Christensen Søren, Rand Kasper D
From the Department of Pharmacy, University of Copenhagen, 2100 Copenhagen E, Denmark and.
the Department of Biologics, H. Lundbeck A/S, Ottiliavej 9, 2500 Valby, Denmark.
J Biol Chem. 2017 Oct 6;292(40):16665-16676. doi: 10.1074/jbc.M117.803320. Epub 2017 Aug 10.
Nerve growth factor-β (NGF) is essential for the correct development of the nervous system. NGF exists in both a mature form and a pro-form (proNGF). The two forms have opposing effects on neurons: NGF induces proliferation, whereas proNGF induces apoptosis via binding to a receptor complex of the common neurotrophin receptor (p75NTR) and sortilin. The overexpression of both proNGF and sortilin has been associated with several neurodegenerative diseases. Insights into the conformational differences between proNGF and NGF are central to a better understanding of the opposing mechanisms of action of NGF and proNGF on neurons. However, whereas the structure of NGF has been determined by X-ray crystallography, the structural details for proNGF remain elusive. Here, using a sensitive MS-based analytical method to measure the hydrogen/deuterium exchange of proteins in solution, we analyzed the conformational properties of proNGF and NGF. We detected the presence of a localized higher-order structure motif in the pro-part of proNGF. Furthermore, by comparing the hydrogen/deuterium exchange in the mature part of NGF and proNGF, we found that the presence of the pro-part in proNGF causes a structural stabilization of three loop regions in the mature part, possibly through a direct molecular interaction. Moreover, using tandem MS analyses, we identified two -linked and two -linked glycosylations in the pro-part of proNGF. These results advance our knowledge of the conformational properties of proNGF and NGF and help provide a rationale for the diverse biological effects of NGF and proNGF at the molecular level.
神经生长因子-β(NGF)对于神经系统的正常发育至关重要。NGF以成熟形式和前体形式(proNGF)存在。这两种形式对神经元具有相反的作用:NGF诱导增殖,而proNGF通过与共同神经营养因子受体(p75NTR)和sortilin的受体复合物结合诱导凋亡。proNGF和sortilin的过表达都与几种神经退行性疾病有关。深入了解proNGF和NGF之间的构象差异对于更好地理解NGF和proNGF对神经元的相反作用机制至关重要。然而,虽然NGF的结构已通过X射线晶体学确定,但proNGF的结构细节仍然难以捉摸。在这里,我们使用一种基于质谱的灵敏分析方法来测量溶液中蛋白质的氢/氘交换,分析了proNGF和NGF的构象特性。我们在proNGF的前体部分检测到一种局部高阶结构基序的存在。此外,通过比较NGF和proNGF成熟部分的氢/氘交换,我们发现proNGF中前体部分的存在可能通过直接分子相互作用导致成熟部分三个环区域的结构稳定。此外,使用串联质谱分析,我们在proNGF的前体部分鉴定出两个N-连接和两个O-连接的糖基化。这些结果推进了我们对proNGF和NGF构象特性的认识,并有助于在分子水平上为NGF和proNGF的多种生物学效应提供理论依据。