Rahman M Motiur, Hirokawa Takatsugu, Tsuji Daisuke, Tsukimoto Jun, Hitaoka Seiji, Yoshida Tatsusada, Chuman Hiroshi, Itoh Kohji
Department of Medicinal Biotechnology, Institute for Medicinal Research, Graduate School of Pharmaceutical Sciences, Tokushima University, Tokushima 770-8505, Japan.
Molecular Profiling Research Center for Drug Discovery (molprof), National Institute of Advanced Industrial Science and Technology (AIST), 2-42 Aomi, Koto-ku, Tokyo 135-0064, Japan.
Biochem Biophys Rep. 2015 Sep 25;4:234-242. doi: 10.1016/j.bbrep.2015.09.017. eCollection 2015 Dec.
Human cytosolic sialidase (Neuraminidase 2, NEU2) catalyzes the removal of terminal sialic acid residues from glycoconjugates. The effect of siastatin B, known as a sialidase inhibitor, has not been evaluated toward human NEU2 yet. We studied the regulation of NEU2 activity by siastatin B and predicted the interaction . Inhibitory and stabilizing effects of siastatin B were analyzed in comparison with DANA (2-deoxy-2,3-dehydro--acetylneuraminic acid) toward 4-umbelliferyl N-acetylneuraminic acid (4-MU-NANA)- and α2,3-sialyllactose-degrading activities of recombinant NEU2 produced by GST-fusion gene expression. Siastatin B exhibited to have higher competitive inhibitory activity toward NEU2 than DANA at pH 4.0. We also revealed the stabilizing effect of siastatin B toward NEU2 activity at acidic pH. Docking model was constructed on the basis of the crystal structure of NEU2/DANA complex (PDB code: 1VCU). Molecular docking predicted that electrostatic neutralization of E111 and E218 residues of the active pocket should not prevent siastatin B from binding at pH 4.0. The imino group (NH) of siastatin B can also interact with D46, neutralized at pH 4.0. Siastatin B was suggested to have higher affinity to the active pocket of NEU2 than DANA, although it has no C7-9 fragment corresponding to that of DANA. We demonstrated here the pH-dependent affinity of siastatin B toward NEU2 to exhibit potent inhibitory and stabilizing activities. Molecular interaction between siastatin B and NEU2 will be utilized to develop specific inhibitors and stabilizers (chemical chaperones) not only for NEU2 but also the other human sialidases, including NEU1, NEU3 and NEU4, based on homology modeling.
人胞质唾液酸酶(神经氨酸酶2,NEU2)催化从糖缀合物中去除末端唾液酸残基。西他司丁B作为一种唾液酸酶抑制剂,其对人NEU2的作用尚未得到评估。我们研究了西他司丁B对NEU2活性的调节作用并预测了其相互作用。与DANA(2-脱氧-2,3-脱氢-N-乙酰神经氨酸)相比,分析了西他司丁B对通过GST融合基因表达产生的重组NEU2的4-伞形酮基-N-乙酰神经氨酸(4-MU-NANA)和α2,3-唾液酸乳糖降解活性的抑制和稳定作用。在pH 4.0时,西他司丁B对NEU2的竞争性抑制活性高于DANA。我们还揭示了西他司丁B在酸性pH下对NEU2活性的稳定作用。基于NEU2/DANA复合物的晶体结构(PDB代码:1VCU)构建了对接模型。分子对接预测,活性口袋中E111和E218残基的静电中和不应阻止西他司丁B在pH 4.0时结合。西他司丁B的亚氨基(NH)也可与在pH 4.0时被中和的D46相互作用。尽管西他司丁B没有与DANA对应的C7-9片段,但它对NEU2活性口袋的亲和力高于DANA。我们在此证明了西他司丁B对NEU2的pH依赖性亲和力表现出强大的抑制和稳定活性。基于同源建模,西他司丁B与NEU2之间的分子相互作用将被用于开发不仅针对NEU2,而且针对包括NEU1、NEU3和NEU4在内的其他人唾液酸酶的特异性抑制剂和稳定剂(化学伴侣)。