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Angiotensin Converting Enzyme (ACE)-Peptide Interactions: Inhibition Kinetics, In Silico Molecular Docking and Stability Study of Three Novel Peptides Generated from Palm Kernel Cake Proteins

机译:血管紧张素转化酶(ACE) - 肽相互作用:抑制动力学,硅质分子对接及三种新型肽蛋白质产生的三种新型肽的稳定性研究

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摘要

Three novel peptide sequences identified from palm kernel cake (PKC) generated protein hydrolysate including YLLLK, WAFS and GVQEGAGHYALL were used for stability study against angiotensin-converting enzyme (ACE), ACE-inhibition kinetics and molecular docking studies. Results showed that the peptides were degraded at different cleavage degrees of 94%, 67% and 97% for YLLLK, WAFS and GVQEGAGHYALL, respectively, after 3 h of incubation with ACE. YLLLK was found to be the least stable (decreased ACE-inhibitory activity) compared to WAFS and GVQEGAGHYALL (increased ACE-inhibitory activity). YLLLK showed the lowest Ki (1.51 mM) in inhibition kinetics study when compared to WAFS and GVQEGAGHYALL with Ki of 2 mM and 3.18 mM, respectively. In addition, ACE revealed the lowest K m app and V max app and higher catalytic efficiency (CE) in the presence of YLLLK at different concentrations, implying that the enzyme catalysis decreased and hence the inhibition mode increased. Furthermore, YLLLK showed the lowest docking score of −8.224 and seven interactions with tACE, while peptide GVQEGAGHYALL showed the higher docking score of −7.006 and five interactions with tACE.
机译:从棕榈仁饼(PKC)产生的蛋白水解产物包括YLLLK,WAFS和GVQEGAGHYALL确定了三个新的肽序列用于稳定性研究对血管紧张素转化酶(ACE),ACE-抑制动力学,分子对接研究。结果表明,该肽以不同的切割程度的94%,67%和用于分别YLLLK,WAFS和GVQEGAGHYALL,97%降解,ACE孵育3小时后。相比WAFS和GVQEGAGHYALL(增加的ACE抑制活性)YLLLK被发现是最不稳定的(降低的ACE抑制活性)。 YLLLK显示出最低的KI(1.51毫摩尔)的抑制动力学研究分别具有2 mM和3.18毫米,基相比WAFS和GVQEGAGHYALL时。另外,ACE揭示YLLLK的不同浓度存在下的最低K m值的应用和V最大的应用程序和更高的催化效率(CE),这意味着酶的催化作用降低,并因此抑制模式增加。此外,YLLLK显示最低对接得分-8.224和七连TACE的相互作用,而肽GVQEGAGHYALL表现出较高的对接得分-7.006和五个与TACE的相互作用。

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