Allosteric-Activation Mechanism of Bovine Chymosin Revealed by Bias-Exchange Metadynamics and Molecular Dynamics Simulations

被引:8
|
作者
Ansari, Samiul M. [1 ]
Coletta, Andrea [2 ,3 ]
Skeby, Katrine Kirkeby [2 ,3 ,4 ]
Sorensen, Jesper [2 ,3 ,5 ]
Schiott, Birgit [2 ,3 ]
Palmer, David S. [1 ]
机构
[1] Univ Strathclyde, Dept Pure & Appl Chem, Thomas Graham Bldg,295 Cathedral St, Glasgow G1 1XL, Lanark, Scotland
[2] Aarhus Univ, Interdisciplinary Nanosci Ctr iNANO, Ctr Insoluble Prot Struct inSPIN, Langelandsgade 140, DK-8000 Aarhus, Denmark
[3] Aarhus Univ, Dept Chem, Langelandsgade 140, DK-8000 Aarhus, Denmark
[4] Digizyme Inc, Boston, MA USA
[5] Dart NeuroSci LLC, 12278 Scripps Summit Dr, San Diego, CA 92131 USA
来源
JOURNAL OF PHYSICAL CHEMISTRY B | 2016年 / 120卷 / 40期
基金
英国工程与自然科学研究理事会;
关键词
X-RAY ANALYSES; ASPARTIC PROTEINASES; KAPPA-CASEIN; 3-DIMENSIONAL STRUCTURE; 2.3-A RESOLUTION; PORCINE PEPSIN; HIV-1; PROTEASE; CALF CHYMOSIN; ACTIVE-SITE; BINDING;
D O I
10.1021/acs.jpcb.6b07491
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The aspartic protease, bovine chymosin, catalyzes the proteolysis of kappa-casein proteins in milk. The bovine chymosin-kappa-casein complex is of industrial interest as the enzyme is used extensively in the manufacturing of processed dairy products. The apo form of the enzyme adopts a self-inhibited conformation in which the side chain of Tyr77 occludes the binding site. On the basis of kinetic, mutagenesis, and crystallographic data, it has been widely reported that a HPHPH sequence in the P8-P4 residues of the natural substrate x-casein acts as the allosteric activator, but the mechanism by which this occurs has not previously been elucidated due to the challenges associated with studying this process by experimental methods. Here we have-employed two computational techniques, molecular dynamics and bias-exchange nietadynamics simulations, to study the mechanism of allosteric activation and to compute the free energy surface for the process. The simulations reveal that allosteric activation-is initiated by interactions between the HPHPH sequence of kappa-casein and a small alpha-helical region of Chymosin (residues 112-116). A small conformational change in the a-helix causes the side chain of Phe114 to vacate a pocket that may then be occupied by the side chain of Tyr77. The free energy surface for the self-inhibited to open-transition is significantly altered by the presence of the HPHPH sequence of kappa-casein.
引用
收藏
页码:10453 / 10462
页数:10
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