Research
Title : | Insights to the proteolytic processing and regulation of Clp protease in Leptospira by its ATPase chaperone and adaptor proteins |
Area of Research : | Medical Sciences |
Focus Area : | Microbial Pathogenesis, Protein Biology |
Principal Investigator : | Prof. Manish Kumar, Indian Institute of Technology (IIT), Guwahati, Assam |
Co-PI: | Dr. Shankar Kanaujia, Indian Institute of Technology (IIT), Guwahati, Assam |
Contact info : | mkumar1@iitg.ac.in, spkanaujia@iitg.ac.in |
Timeline Start Year : | 2021 |
Timeline End Year : | 2025 |
Total Budget (INR): | 65,.9,524 |
Details
Executive Summary : | We have established previously that Leptospira caseinolytic protease (ClpP) isoforms mixture is intrinsically active and its oligomerization is distinct from those of other ClpP orthologs. Therefore, the role of other ClpP regulatory proteins (ClpA or ClpC) and its cognate adaptor proteins (ClpS1 and ClpS2) in modulating specific proteolytic activity in ClpP1P2 peptidase complex is an interesting subject to understand proteostasis in Leptospira. In this project we propose to clone, express, purify and biochemically characterize the two predicted ClpS adaptor proteins (LIC11356 and LIC11815) and its cognate ATPase chaperone ClpA (LIC11814) or ClpC (LIC10339). Since the efficiency of genetic manipulation in pathogenic Leptospira has very low success rate and very difficult, understanding of these unprecedented regulation of proteolytic complexes in association with its multi-chaperone and adaptor proteins under in vitro condition may assist the biochemist in developing novel drugs. |
Equipments : | Fluorescent Spectrophotometer |
Achievements : | "We have PCR-amplified the full-length ORFs of clpA, clpC, clpS1, and clpS2 from Leptospira interrogans serovar Copenhageni strain Fiocruz L1-130 and cloned them into the pET23a bacterial expression vector. LinClpA, LinClpC, LinClpS1, and LinClpS2 were purified under native conditions, yielding 1–2.5 mg/L. Biochemical characterization of LinClpC revealed its ATP-dependent oligomerization and interaction with both LinClpP isoforms (LinClpP1 and LinClpP2). The LinClpC in association with LinClp1P2 heterocomplex forms LinClpCP1P2 machinery which imparts protease activity. We have also studied the role of natural antibiotic, acyldepsipeptide (ADEP1) on stimulation of protease activity of LinClpP1P2 complex. The study also investigates the structural and functional characteristics of chaperone, |
Outcome/Output: | 1 |
Organizations involved
Implementing Agency : | Indian Institute of Technology (IIT), Guwahati, Assam |
Funding Agency : | Department of Science and Technology (DBT) |
Source: | E-promis and Information received by Investigator |