Miyamoto Kazuhide, Nakatani Arisa, Saito Kazuki
Department of Pharmaceutical Health Care, Faculty of Pharmaceutical Sciences, Himeji Dokkyo University, Hyogo, Japan.
Protein Sci. 2017 Dec;26(12):2451-2457. doi: 10.1002/pro.3301. Epub 2017 Oct 25.
Synaptotagmin-like protein 4 (Slp4), expressed in human platelets, is associated with dense granule release. Slp4 is comprised of the N-terminal zinc finger, Slp homology domain, and C2 domains. We synthesized a compact construct (the Slp4N peptide) corresponding to the Slp4 N-terminal zinc finger. Herein, we have determined the solution structure of the Slp4N peptide by nuclear magnetic resonance (NMR). Furthermore, experimental, chemical modification of Cys residues revealed that the Slp4N peptide binds two zinc atoms to mediate proper folding. NMR data showed that eight Cys residues coordinate zinc atoms in a cross-brace fashion. The Simple Modular Architecture Research Tool database predicted the structure of Slp4N as a RING finger. However, the actual structure of the Slp4N peptide adopts a unique C C -type FYVE fold and is distinct from a RING fold. To create an artificial RING finger (ARF) with specific ubiquitin-conjugating enzyme (E2)-binding capability, cross-brace structures with eight zinc-ligating residues are needed as the scaffold. The cross-brace structure of the Slp4N peptide could be utilized as the scaffold for the design of ARFs.
在人类血小板中表达的类突触结合蛋白4(Slp4)与致密颗粒释放相关。Slp4由N端锌指、Slp同源结构域和C2结构域组成。我们合成了一个与Slp4 N端锌指对应的紧密构建体(Slp4N肽)。在此,我们通过核磁共振(NMR)确定了Slp4N肽的溶液结构。此外,对Cys残基的实验性化学修饰表明,Slp4N肽结合两个锌原子以介导正确折叠。NMR数据显示,八个Cys残基以交叉支撑的方式配位锌原子。简单模块化结构研究工具数据库将Slp4N的结构预测为一个环状结构域。然而,Slp4N肽的实际结构采用独特的C - C型FYVE折叠,与环状折叠不同。为了创建具有特定泛素结合酶(E2)结合能力的人工环状结构域(ARF),需要具有八个锌配位残基的交叉支撑结构作为支架。Slp4N肽的交叉支撑结构可作为设计ARF的支架。