Shi Ke, Bagchi Sounak, Bickel Jordis, Esfahani Shiva H, Yin Lulu, Cheng Tiffany, Karamyan Vardan T, Aihara Hideki
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN, 55455, USA.
Department of Pharmaceutical Sciences, Texas Tech University Health Sciences Center, Amarillo, TX, 79106, USA.
Sci Rep. 2024 Aug 8;14(1):18420. doi: 10.1038/s41598-024-67639-w.
A zinc metallopeptidase neurolysin (Nln) processes diverse bioactive peptides to regulate signaling in the mammalian nervous system. To understand how Nln interacts with various peptides with dissimilar sequences, we determined crystal structures of Nln in complex with diverse peptides including dynorphins, angiotensin, neurotensin, and bradykinin. The structures show that Nln binds these peptides in a large dumbbell-shaped interior cavity constricted at the active site, making minimal structural changes to accommodate different peptide sequences. The structures also show that Nln readily binds similar peptides with distinct registers, which can determine whether the peptide serves as a substrate or a competitive inhibitor. We analyzed the activities and binding of Nln toward various forms of dynorphin A peptides, which highlights the promiscuous nature of peptide binding and shows how dynorphin A (1-13) potently inhibits the Nln activity while dynorphin A (1-8) is efficiently cleaved. Our work provides insights into the broad substrate specificity of Nln and may aid in the future design of small molecule modulators for Nln.
一种锌金属肽酶神经溶素(Nln)可加工多种生物活性肽,以调节哺乳动物神经系统中的信号传导。为了解Nln如何与具有不同序列的各种肽相互作用,我们确定了Nln与多种肽(包括强啡肽、血管紧张素、神经降压素和缓激肽)形成复合物的晶体结构。这些结构表明,Nln在活性位点收缩的大哑铃形内部腔室中结合这些肽,为适应不同的肽序列,结构变化极小。这些结构还表明,Nln很容易以不同的配体结合相似的肽,这可以决定该肽是作为底物还是竞争性抑制剂。我们分析了Nln对各种形式的强啡肽A肽的活性和结合情况,这突出了肽结合的混杂性质,并展示了强啡肽A(1-13)如何有效抑制Nln活性,而强啡肽A(1-8)则被有效切割。我们的工作为Nln广泛的底物特异性提供了见解,并可能有助于未来设计Nln的小分子调节剂。