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Crystal structure of Aedes aegypti trypsin inhibitor in complex with μ-plasmin reveals role for scaffold stability in Kazal-type serine protease inhibitor

Protein Sci. 2021-11; 
Varsha Ashok Walvekar, Karthik Ramesh, Chacko Jobichen, Muthu Kannan, J Sivaraman, R Manjunatha Kini, Yu Keung Mok
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Custom Vector Construction … The gene encoding for μ-plasminogen was purchased from GenScript (NJ, USA) and cloned into modified version of the pET32a vector (Merck) for the expression of protein in a prokaryotic expression system. μ-plasminogen was expressed using IPTG induction in Rosetta-gami … Get A Quote

摘要

Kazal-type protease inhibitor specificity is believed to be determined by sequence of the reactive-site loop that make most, if not all, contacts with the serine protease. Here, we determined the complex crystal structure of Aedes aegypti trypsin inhibitor (AaTI) with μ-plasmin, and compared its reactivities with other Kazal-type inhibitors, infestin-1 and infestin-4. We show that the shortened 99-loop of plasmin creates an S2 pocket, which is filled by phenylalanine at the P2 position of the reactive-site loop of infestin-4. In contrast, AaTI and infestin-1 retain a proline at P2, rendering the S2 pocket unfilled, which leads to lower plasmin inhibitions. Furthermore, the protein scaffold of AaTI is unstable,... More

关键词

Aedes aegypti trypsin inhibitor, Kazal-type protease inhibitor, plasmin, protein scaffold stability, surface loops of serine proteases