Literature DB >> 30052127

Structural insights into the unique inhibitory mechanism of Kunitz type trypsin inhibitor from Cicer arietinum L.

Ameya D Bendre1,2, C G Suresh1, Dhanasekaran Shanmugam1,2, Sureshkumar Ramasamy1.   

Abstract

Kunitz-type trypsin inhibitors bind to the active pocket of trypsin causing its inhibition. Plant Kunitz-type inhibitors are thought to be important in defense, especially against insect pests. From sequence analysis of various Kunitz-type inhibitors from plants, we identified CaTI2 from chickpea as a unique variant lacking the functionally important arginine residue corresponding to the soybean trypsin inhibitor (STI) and having a distinct and unique inhibitory loop organization. To further explore the implications of these sequence variations, we obtained the crystal structure of recombinant CaTI2 at 2.8Å resolution. It is evident from the structure that the variations in the inhibitory loop facilitates non-substrate like binding of CaTI2 to trypsin, while the canonical inhibitor STI binds to trypsin in substrate like manner. Our results establish the unique mechanism of trypsin inhibition by CaTI2, which warrant further research into its substrate spectrum. Abbreviations BApNA-Benzoyl-L-arginine 4-nitroanilide BPT bovine pancreatic trypsin CaTI2 Cicer arietinum L trypsin inhibitor 2 DrTI Delonix regia Trypsin inhibitor EcTI Enterolobium contortisiliquum trypsin inhibitor ETI Erythrina caffra trypsin inhibitor KTI Kunitz type inhibitor STI soybean trypsin inhibitor TKI Tamarindus indica Kunitz inhibitor Communicated By Ramaswamy H. Sarma.

Entities:  

Keywords:  Chickpea; Kunitz trypsin inhibitor; crystal structure; inhibitory loop; trypsin

Mesh:

Substances:

Year:  2018        PMID: 30052127     DOI: 10.1080/07391102.2018.1494633

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  4 in total

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Review 2.  Peptide-based protease inhibitors from plants.

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4.  Structure-Activity Relationship and Molecular Docking of a Kunitz-Like Trypsin Inhibitor, Kunitzin-AH, from the Skin Secretion of Amolops hainanensis.

Authors:  Yuqing Chen; Xinping Xi; Chengbang Ma; Mei Zhou; Xiaoling Chen; Zhuming Ye; Lilin Ge; Qinan Wu; Tianbao Chen; Lei Wang; Hang Fai Kwok
Journal:  Pharmaceutics       Date:  2021-06-26       Impact factor: 6.321

  4 in total

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