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    •   BracU IR
    • School of Data and Sciences (SDS)
    • Department of Mathematics and Natural Sciences (MNS)
    • Master of Science in Biotechnology
    • Thesis (Master of Science in Biotechnology)
    • View Item
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    Structural analysis of three pivotal SERK dependent PRR complexes of Arabidopsis thaliana

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    20376005_MNS.pdf (2.804Mb)
    Date
    2021-01
    Publisher
    Brac University
    Author
    Alvy, Raghib Ishraq
    Metadata
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    URI
    http://hdl.handle.net/10361/15091
    Abstract
    Pattern Triggered Immunity (PTI) is distinguished with the activities of pattern recognition receptors (PRRs), which play an essential role in plant defense mechanism. During aggression of microbes, PRRs immediately bind with the PAMPs and recruit co-receptors to initiate the defense signal. Several plant PRRs have been discovered, very few of their functional parameters have been studied. In this study, the crystallographic structures of FLS2-flg22-BAK1 (PDB ID: 4MN8), HAESA-IDA-SERK1 (PDB ID: 5IYX) and PSKR-Phytosulphokine-SERK1 (PDB ID: 4Z64) complexes were simulated for 30ns. Simulated trajectories were analyzed for getting an overview of the immune response of PRRs towards PAMPs with the help of co-receptors. Moreover, MM/PBSA calculation revealed that interaction between FLS2-BAK1 and HAESA-SERK1 show similarity whereas PSKR interacts differently with SERK1. As PRRs play a major role in plant defense mechanism, it can be hypothesized that binding mechanism with PAMPs and co-receptors will help to understand the interaction pattern of PTI.
    Keywords
    Pattern Triggered Immunity; Pattern Recognition Receptors; MM/PBSA; PAMP; Molecular Dynamics; Bioinformatics
     
    Description
    This thesis report is submitted in partial fulfillment of the requirement for the degree of Master of Science in Biotechnology, 2021.
     
    Catalogued from PDF version of thesis.
     
    Includes bibliographical references (pages 95-103).
    Department
    Department of Mathematics and Natural Sciences, Brac University
    Type
    Thesis
    Collections
    • Thesis (Master of Science in Biotechnology)

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