Structural investigation and manipulation of key regulatory enzymes in the mevalonate pathway of isoprenoid biosynthesis

Information

  • Research Project
  • 8957385
  • ApplicationId
    8957385
  • Core Project Number
    R15GM116029
  • Full Project Number
    1R15GM116029-01
  • Serial Number
    116029
  • FOA Number
    PA-13-313
  • Sub Project Id
  • Project Start Date
    9/1/2015 - 9 years ago
  • Project End Date
    8/31/2018 - 6 years ago
  • Program Officer Name
    BARSKI, OLEG
  • Budget Start Date
    9/1/2015 - 9 years ago
  • Budget End Date
    8/31/2018 - 6 years ago
  • Fiscal Year
    2015
  • Support Year
    01
  • Suffix
  • Award Notice Date
    8/17/2015 - 9 years ago
Organizations

Structural investigation and manipulation of key regulatory enzymes in the mevalonate pathway of isoprenoid biosynthesis

? DESCRIPTION (provided by applicant): Isoprenoids represent the largest and most structurally diverse class of natural products. Used as drugs for the treatment of a multitude of human diseases, isoprenoids and their derivatives can now be produced in microorganisms expressing the enzymes of the mevalonate pathway, which is responsible for the biosynthesis of isoprenoid precursors. The enzyme targets of in vivo mevalonate pathway regulation are 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase (HMGR) and mevalonate kinase (MK). For both of these enzymes, key structural and mechanistic information is currently lacking, hindering the further development of microbial systems for isoprenoid production. Specifically, the structural basis of HMGR cofactor specificity for either NADH or NADPH, which differs among HMGR homologs, is as yet unknown. For MK, which is subject to tight feedback inhibition, the identity of the inhibitors and their inhibition potencies vary widely across MKs frm different organisms, yet the structural underpinnings that govern such a variance in inhibition profiles are entirely unexplored. In this study, these gaps in fundamental structural knowledge will be addressed directly. Using X-ray crystallography in conjunction with complementary biochemical studies, the structural bases of both HMGR cofactor specificity and MK inhibition variance among enzyme homologs will be investigated. In addition, to further probe the enzyme structure-function relationship, chimeric enzymes will be constructed and studied in order to alter or switch the differential activities between enzymes from different organisms. Therefore, the proposed work will not only reveal the structural determinants to critical HMGR and MK properties that remain unstudied, it will also employ structure-guided protein modification to yield new enzymes with more desirable cofactor preferences and inhibitory responses that can be used in the microbial production of isoprenoid natural products.

IC Name
NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES
  • Activity
    R15
  • Administering IC
    GM
  • Application Type
    1
  • Direct Cost Amount
    215000
  • Indirect Cost Amount
    72950
  • Total Cost
    287950
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    859
  • Ed Inst. Type
    SCHOOLS OF ARTS AND SCIENCES
  • Funding ICs
    NIGMS:287950\
  • Funding Mechanism
    Non-SBIR/STTR RPGs
  • Study Section
    MSFA
  • Study Section Name
    Macromolecular Structure and Function A Study Section
  • Organization Name
    BRYN MAWR COLLEGE
  • Organization Department
    CHEMISTRY
  • Organization DUNS
    067398420
  • Organization City
    BRYN MAWR
  • Organization State
    PA
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    190102899
  • Organization District
    UNITED STATES