English  |  正體中文  |  简体中文  |  Items with full text/Total items : 17918/22933 (78%)
Visitors : 7409025      Online Users : 105
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version
    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/15965


    Title: Evolution of vitamin B2 biosynthesis: eubacterial RibG and fungal Rib2 deaminases
    Authors: SC, Chen
    CY, Shen
    TM, Yen
    HC, Yu
    TH, Chang
    WL, Lai
    SH, Liaw
    Contributors: 中山醫學大學
    Keywords: Rib2;RibG;amino-binding hole;mutational analysis;riboflavin biosynthesis
    Date: 2013
    Issue Date: 2016-09-06T08:43:53Z (UTC)
    ISSN: 0907-4449
    Abstract: Eubacterial RibG and yeast Rib2 possess a deaminase domain for pyrimidine deamination in the second and third steps, respectively, of riboflavin biosynthesis. These enzymes are specific for ribose and ribitol, respectively. Here, the crystal structure of Bacillus subtilis RibG in complex with a deaminase product is reported at 2.56 Å resolution. Two loops move towards the product on substrate binding, resulting in interactions with the ribosyl and phosphate groups and significant conformational changes. The product carbonyl moiety is bent out of the pyrimidine ring to coordinate to the catalytic zinc ion. Such distortions in the bound substrate and product may play an essential role in enzyme catalysis. The yeast Rib2 structure was modelled and a mutational analysis was carried out in order to understand the mechanism of substrate recognition in these two enzymes. Detailed structural comparisons revealed that the two consecutive carbonyl backbones that occur prior to the PCXXC signature constitute a binding hole for the target amino group of the substrate. This amino-binding hole is essential in B. subtilis RibG and is also conserved in the RNA/DNA-editing deaminases.
    URI: http://dx.doi.org/10.1107/S0907444912044903
    https://ir.csmu.edu.tw:8080/ir/handle/310902500/15965
    Relation: Acta Crystallogr D Biol Crystallogr. 2013 Feb;69(Pt 2):227-36.
    Appears in Collections:[醫學檢驗暨生物技術學系暨碩士班] 期刊論文

    Files in This Item:

    File Description SizeFormat
    index.html0KbHTML306View/Open


    SFX Query

    All items in CSMUIR are protected by copyright, with all rights reserved.


    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - Feedback