Faculty of Pharmacy, Yasuda Women's University, Hiroshima, Japan.
Department of Virology, Institute of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.
J Biol Chem. 2021 Jan-Jun;296:100698. doi: 10.1016/j.jbc.2021.100698. Epub 2021 Apr 23.
Homologues of the Oscillatoria agardhii agglutinin (OAA) lectins contain a sequence repeat of ∼66 amino acids, with the number of tandem repeats varying across family members. OAA homologues bind high-mannose glycans on viral surface proteins, thereby interfering with viral entry into host cells. As such, OAA homologues have potential utility as antiviral agents, but a more detailed understanding of their structure-function relationships would enable us to develop improved constructs. Here, we determined the X-ray crystal structure of free and glycan-bound forms of Pseudomonas taiwanensis lectin (PTL), an OAA-family lectin consisting of two tandem repeats. Like other OAA-family lectins, PTL exhibited a β-barrel-like structure with two symmetrically positioned glycan-binding sites at the opposite ends of the barrel. Upon glycan binding, the conformation of PTL undergoes a more significant change than expected from previous OAA structural analysis. Moreover, the electron density of the bound glycans suggested that the binding affinities are different at the two binding sites. Next, based on analysis of these structures, we used site-specific mutagenesis to create PTL constructs expected to increase the population with a conformation suitable for glycan binding. The engineered PTLs were examined for their antiviral activity against the influenza virus. Interestingly, some exhibited stronger activity compared with that of the parent PTL. We propose that our approach is effective for the generation of potential microbicides with enhanced antiviral activity.
集胞藻凝集素(OAA)同源物包含一个约 66 个氨基酸的序列重复,串联重复的数量因家族成员而异。OAA 同源物结合病毒表面蛋白上的高甘露糖聚糖,从而干扰病毒进入宿主细胞。因此,OAA 同源物具有作为抗病毒药物的潜力,但更详细地了解它们的结构-功能关系将使我们能够开发出改进的构建体。在这里,我们确定了游离和糖结合形式的假单胞菌台湾菌凝集素(PTL)的 X 射线晶体结构,PTL 是一种由两个串联重复组成的 OAA 家族凝集素。与其他 OAA 家族凝集素一样,PTL 表现出 β-桶状结构,在桶的相对两端有两个对称的糖结合位点。糖结合后,PTL 的构象发生的变化比以前的 OAA 结构分析预期的要大。此外,结合糖的电子密度表明两个结合位点的结合亲和力不同。接下来,基于这些结构的分析,我们使用定点突变创建了预计会增加适合糖结合构象的群体的 PTL 构建体。对这些工程化的 PTL 进行了抗流感病毒活性的检测。有趣的是,与亲本 PTL 相比,一些表现出更强的活性。我们提出,我们的方法对于产生具有增强抗病毒活性的潜在杀菌剂是有效的。