Select data courtesy of the U.S. National Library of Medicine.

© 2026 DeepDyve, Inc. All rights reserved.

This site is protected by VikingCloud's Trusted Commerce program

    Identification of the region of a 14-kilodalton protein of Rhodococcus ruber that is responsible for the binding of this phasin to polyhydroxyalkanoic acid granules

    Pieper-Furst, U; Madkour, MH; Mayer, F; Steinbuchel, A
    Journal of Bacteriology·May 1, 1995

    Identification of the region of a 14-kilodalton protein of Rhodococcus ruber that is responsible for the binding of this phasin to polyhydroxyalkanoic acid granules

    Abstract

    U Pieper-Furst, MH Madkour, F Mayer and A Steinbuchel Institut fur Mikrobiologie, Georg-August-Universitat Gottingen, Germany. The function of the polyhydroxyalkanoic acid (PHA) granule-associated GA14 protein of Rhodococcus ruber was investigated in Escherichia coli XL1-Blue, which coexpressed this protein with the polyhydroxybutyric acid (PHB) biosynthesis operon of Alcaligenes eutrophus. The GA14 protein had no influence on the biosynthesis rate of PHB in E. coli XL1- Blue(pSKCO7), but this recombinant E. coli strain formed smaller PHB granules than were formed by an E. coli strain that expressed only the PHB operon. Immunoelectron microscopy with GA14-specific antibodies demonstrated the binding of GA14 protein to these mini granules. In a previous study, two hydrophobic domains close to the C terminus of the GA14 protein were analyzed, and a working hypothesis that suggested an anchoring of the GA14 protein in the phospholipid monolayer surrounding the PHA granule core by these hydrophobic domains was developed (U. Pieper-Furst, M. H. Madkour, F. Mayer, and A. Steinbuchel, J. Bacteriol. 176:4328-4337, 1994). This hypothesis was confirmed by the construction of C-terminally truncated variants of the GA14 protein lacking the second or both hydrophobic domains and by the demonstration of their inability to bind to PHB granules. Further confirmation of the hypothesis was obtained by the construction of a fusion protein composed of the acetaldehyde dehydrogenase II of A. eutrophus and the C terminus of the GA14 protein containing both hydrophobic domains and by its affinity to native and artificial PHB granules.

    Meet DeepDyve

    Get unlimited, instant access to over 150 million full-text scientific articles for less than the price of buying a single PDF.

    150M+Research Papers
    35M+Full-Text Streaming Papers
    25M+Open Access Papers
    $2/dayStarting Price
    DeepDyve Collection

    DeepDyve Collection

    Access top-tier journals without the top-tier price. We partner directly with the world’s leading academic publishers to bring you legally compliant, instant access. Read the latest findings from Springer, Wiley, Oxford University Press, and more—all in one subscription.

    Browse our collection of titles from leading publishers

    arXiv
    ChemRxiv
    Hindawi
    JAMA
    MDPI
    medRxiv
    NEJM
    Oxford University Press
    PLOS
    PubMed
    Sage
    Springer Nature
    Wiley
    Wolters Kluwer
    AI Research Assistant

    AI Research Assistant

    Accelerate your research with our advanced AI tools. Chat directly with your uploaded papers, and DeepDyve’s 50M+ LitStream and OA collections of full-text papers. AI responses come directly from the literature, footnoted and sourced, to provide the most authoritative and verifiable responses. AI outputs powered by OpenAI and Anthropic Claude. AI Smart Folders (coming soon)

    Stop wasting time on paywalls, pirated sites and scattered journal portals

    Streamline your research workflow with DeepDyve's comprehensive literature management solution for less than the price of buying a single PDF.

    Try 1 month for $0