Ashraf Arshida, Mudgil Priti, Palakkott Abdulrasheed, Iratni Rabah, Gan Chee-Yuen, Maqsood Sajid, Ayoub Mohammed Akli
Department of Biology, College of Science, United Arab Emirates University, PO Box 15551, Al Ain, United Arab Emirates.
Department of Food, Nutrition and Health, College of Food and Agriculture, United Arab Emirates University, PO Box 15551, Al Ain, United Arab Emirates.
J Dairy Sci. 2021 Jan;104(1):61-77. doi: 10.3168/jds.2020-18627. Epub 2020 Nov 6.
The molecular basis of the anti-diabetic properties of camel milk reported in many studies and the exact active agent are still elusive. Recent studies have reported effects of camel whey proteins (CWP) and their hydrolysates (CWPH) on the activities of dipeptidyl peptidase IV (DPP-IV) and the human insulin receptor (hIR). In this study, CWPH were generated, screened for DPP-IV binding in silico and inhibitory activity in vitro, and processed for peptide identification. Furthermore, pharmacological action of intact CWP and their selected hydrolysates on hIR activity and signaling and on glucose uptake were investigated in cell lines. Results showed inhibition of DPP-IV by CWP and CWPH and their positive action on hIR activation and glucose uptake. Interestingly, the combination of CWP or CWPH with insulin revealed a positive allosteric modulation of hIR that was drastically reduced by the competitive hIR antagonist. Our data reveal for the first time the profiling and pharmacological actions of CWP and their derived peptides fractions on hIR and their pathways involved in glucose homeostasis. This sheds more light on the anti-diabetic properties of camel milk by providing the molecular basis for the potential use of camel milk in the management of diabetes.
许多研究报道的骆驼奶抗糖尿病特性的分子基础以及确切的活性剂仍然难以捉摸。最近的研究报道了骆驼乳清蛋白(CWP)及其水解产物(CWPH)对二肽基肽酶IV(DPP-IV)和人胰岛素受体(hIR)活性的影响。在本研究中,制备了CWPH,对其进行了计算机模拟的DPP-IV结合筛选和体外抑制活性筛选,并进行了肽鉴定。此外,还研究了完整的CWP及其选定的水解产物对细胞系中hIR活性、信号传导和葡萄糖摄取的药理作用。结果显示CWP和CWPH对DPP-IV有抑制作用,并且对hIR激活和葡萄糖摄取有积极作用。有趣的是,CWP或CWPH与胰岛素的组合显示出hIR的正变构调节,而竞争性hIR拮抗剂可使其显著降低。我们的数据首次揭示了CWP及其衍生肽段对hIR及其参与葡萄糖稳态的途径的分析和药理作用。这通过为骆驼奶在糖尿病管理中的潜在应用提供分子基础,进一步阐明了骆驼奶的抗糖尿病特性。