Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia, New Delhi 110025, India.
School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, Sichuan, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2020 Jan 15;225:117453. doi: 10.1016/j.saa.2019.117453. Epub 2019 Aug 5.
Sphingosine kinase 1 (SphK1) catalyzes the conversion of sphingosine to sphingosine-1-phosphate that acts as a bioactive signalling molecule, and regulates various cellular processes including lymphocyte trafficking, angiogenesis and response to apoptotic stimuli. Abnormal expression of SphK1 has been observed in a wide range of cancers highlighting their role in tumour growth and metastasis. This enzyme also plays a critical role in metabolic and inflammatory diseases, including pulmonary fibrosis, diabetic neuropathy and Alzheimer's disease. In the present study, we have investigated the structural and conformational changes in SphK1 at varying pH using various spectroscopic techniques. Consistent results were observed with the function of SphK1 at corresponding pH values. SphK1 maintains its secondary and tertiary structure in the pH range of 7.5-10.0. However, protein aggregation was observed in the acidic pH range (4.0-6.5). At pH 2.0, the SphK1 exists in the molten-globule state. Kinase assay also shows that SphK1 activity was optimal in the pH range of 7.5-8.5. To complement in vitro results, we have performed 100 ns molecular dynamics simulation to examine the effect of pH on the structural stability of SphK1 at molecular level. SphK1 maintains its native conformation in the alkaline pH range with some residual fluctuations detected at acidic pH. A considerable correlation was noticed between spectroscopic, enzymatic activity and MD simulation studies. pH dependent structural changes can be further implicated to understand its association with disease condition, and cellular homeostasis with respect to protein function under variable pH conditions.
鞘氨醇激酶 1(SphK1)催化鞘氨醇转化为鞘氨醇-1-磷酸,作为一种生物活性信号分子,调节包括淋巴细胞迁移、血管生成和对凋亡刺激的反应在内的各种细胞过程。SphK1 的异常表达在广泛的癌症中观察到,突出了它们在肿瘤生长和转移中的作用。该酶在代谢和炎症性疾病中也起着关键作用,包括肺纤维化、糖尿病性神经病和阿尔茨海默病。在本研究中,我们使用各种光谱技术研究了不同 pH 值下 SphK1 的结构和构象变化。在相应的 pH 值下观察到 SphK1 功能的一致结果。SphK1 在 pH 值为 7.5-10.0 的范围内保持其二级和三级结构。然而,在酸性 pH 值范围(4.0-6.5)下观察到蛋白质聚集。在 pH 2.0 时,SphK1 处于无规卷曲状态。激酶测定也表明 SphK1 的活性在 pH 值为 7.5-8.5 的范围内最佳。为了补充体外结果,我们进行了 100ns 的分子动力学模拟,以在分子水平上检查 pH 对 SphK1 结构稳定性的影响。SphK1 在碱性 pH 值范围内保持其天然构象,在酸性 pH 值下检测到一些残留波动。在光谱学、酶活性和 MD 模拟研究之间注意到相当大的相关性。依赖 pH 的结构变化可以进一步暗示其与疾病状况的关联,以及在可变 pH 条件下与蛋白质功能相关的细胞内稳态。