New Human Inducible Nitric Oxide Synthase-binding Proteins in Testis: Possible R

Information

  • Research Project
  • 7981650
  • ApplicationId
    7981650
  • Core Project Number
    R15HD066393
  • Full Project Number
    1R15HD066393-01
  • Serial Number
    66393
  • FOA Number
    PA-06-042
  • Sub Project Id
  • Project Start Date
    9/1/2010 - 14 years ago
  • Project End Date
    8/31/2013 - 11 years ago
  • Program Officer Name
    MOSS, STUART B.
  • Budget Start Date
    9/1/2010 - 14 years ago
  • Budget End Date
    8/31/2013 - 11 years ago
  • Fiscal Year
    2010
  • Support Year
    1
  • Suffix
  • Award Notice Date
    8/26/2010 - 14 years ago

New Human Inducible Nitric Oxide Synthase-binding Proteins in Testis: Possible R

DESCRIPTION (provided by applicant): Nitric oxide (NO) is a cell signaling molecule and involved in numerous biological processes, including vasodilatation, neurotransmission, macrophage mediated immunity and carcinogenesis. Nitric oxide (NO) is differentially formed in almost all types of human cells by two constitutive and one inducible form of nitric oxide synthases (NOS). The possible role of NO in fertility has been proposed by many recent publications. Studies with rats have reported that NO has both normal physiological effect on reproduction and inflammation-based infertility. NO has apparent capability to improve sperm viability and motility in both fertile and infertile individuals. However, NO has been implicated as a cause to obstructive azoospermia, one of the common causes of infertility. Like constitutive NOSs, inducible nitric oxide synthase (iNOS) also takes part in protein-protein interaction. Further bolstering the protein-protein interaction of all NOSs, recent research with site- directed mutagenesis has identified critical N-terminal amino acid residues essential for dimerization of human iNOS and its activity. It is noteworthy that the amino acid sequence of three NOSs is different in their N-terminal portions. The use of iNOSs'N-terminus as bait in the yeast two-hybrid system could possibly identify new putative interacting proteins. Since NO has a dual role in human physiology, NOS-isoform specific inhibitors are needed in terms of disease prevention, e.g., hypertension, lung cancer, infertility, etc. This proposal is designed to answer the following question: What other proteins are interacting with iNOS and how does this interaction influence NO production in testis? The proposal's hypothesis is that iNOS interacts with proteins, not yet identified, that modulate its role in testis physiology. The following specific aims will investigate this hypothesis: 1) Isolate and identify genes that encode proteins that bind iNOS in the yeast two-hybrid system;2) Confirm binding specificity between iNOS and putative interacting proteins in vivo using mammalian cell lines;and 3) Characterize the effects of iNOS modulation on NO synthesis affecting testis physiology employing RNA interference study. Consequently, this study will expand current knowledge of the role of iNOS mediated NO synthesis in male fertility, and possibly reveal other pathogenic mechanisms in the reproductive system that may include birth defects due to male germline mutations. PUBLIC HEALTH RELEVANCE: This study will expand current knowledge of the role of iNOS mediated NO synthesis in male fertility, and possibly reveal other pathogenic mechanisms in the reproductive system that may include birth defects due to male germline mutations.

IC Name
EUNICE KENNEDY SHRIVER NATIONAL INSTITUTE OF CHILD HEALTH &HUMAN DEVELOPMENT
  • Activity
    R15
  • Administering IC
    HD
  • Application Type
    1
  • Direct Cost Amount
  • Indirect Cost Amount
  • Total Cost
    341934
  • Sub Project Total Cost
  • ARRA Funded
    True
  • CFDA Code
    701
  • Ed Inst. Type
    SCHOOLS OF ARTS AND SCIENCES
  • Funding ICs
    NICHD:341934\
  • Funding Mechanism
    Research Projects
  • Study Section
    CMIR
  • Study Section Name
    Cellular, Molecular and Integrative Reproduction Study Section
  • Organization Name
    UNIVERSITY OF HOUSTON-CLEAR LAKE
  • Organization Department
    BIOLOGY
  • Organization DUNS
    039674916
  • Organization City
    HOUSTON
  • Organization State
    TX
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    770581002
  • Organization District
    UNITED STATES