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  • Portland Press Ltd.  (2)
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  • Portland Press Ltd.  (2)
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  • 1
    Online Resource
    Online Resource
    Portland Press Ltd. ; 2012
    In:  Biochemical Society Transactions Vol. 40, No. 5 ( 2012-10-01), p. 1086-1089
    In: Biochemical Society Transactions, Portland Press Ltd., Vol. 40, No. 5 ( 2012-10-01), p. 1086-1089
    Abstract: Various investigators have identified the major domain organization of LRRK2 (leucine-rich repeat kinase 2), which includes a GTPase ROC (Ras of complex proteins) domain followed by a COR (C-terminal of ROC) domain and a protein kinase domain. In addition, there are four domains composed of structural repeat motifs likely to be involved in regulation and localization of this complex protein. In the present paper, we report our bioinformatic analyses of the human LRRK2 amino acid sequence to predict the repeat size, number and likely boundaries for the armadillo repeat, ankyrin repeat, the leucine-rich repeat and WD40 repeat regions of LRRK2. Homology modelling using known protein structures with similar domains was used to predict structures, exposed residues and location of mutations for these repeat regions. We predict that the armadillo repeats, ankyrin repeats and leucine-rich repeats together form an extended N-terminal flexible ‘solenoid’-like structure composed of tandem repeat modules likely to be important in anchoring to the membrane and cytoskeletal structures as well as binding to other protein ligands. Near the C-terminus of LRRK2, the WD40 repeat region is predicted to form a closed propeller structure that is important for protein complex formation.
    Type of Medium: Online Resource
    ISSN: 0300-5127 , 1470-8752
    Language: English
    Publisher: Portland Press Ltd.
    Publication Date: 2012
    SSG: 12
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  • 2
    Online Resource
    Online Resource
    Portland Press Ltd. ; 1977
    In:  Biochemical Journal Vol. 168, No. 3 ( 1977-12-15), p. 475-481
    In: Biochemical Journal, Portland Press Ltd., Vol. 168, No. 3 ( 1977-12-15), p. 475-481
    Abstract: 1. Gap (communicating) junctions are plasma-membrane specializations of characteristic morphology that form transmembrane channels allowing direct communication between cells. Their preparation is described starting from mouse liver plasma membranes and the constituent polypeptides are deduced. 2. Gap junctions co-purify with collagen fibres when the plasma-membrane residues insoluble in N-dodecyl sarcosinate are fractionated on sucrose gradients. Sucrose-density perturbation by relipidation of isolated gap junctions or the use of urea to remove non-junctional membranes both failed to diminish the collagen content of fractions. 3. Removal of collagen by treatment with purified collagenase preparations yielded morphologically satisfactory gap-junction fractions. Analysis by polyacrylamide-gel electrophoresis of the polypeptides present in gap junctions prepared by procedures omitting or using collagenases indicated two non-glycosylated polypeptides, a major component of apparent mol.wt. 38000 and a minor 40000-mol.wt. component. These two polypeptides were also present in plasma membranes and the intermediate fractions. 4. Proteolysis of the gap-junction polypeptides yielding components of mol.wt. 34000, 25000 and below 20000 occurred when iodinated gap junctions were subject to prolonged collagenase treatment, thus explaining the variable polypeptide composition of gap junctions reported by others. 5. The morphological properties of the isolated gap junctions prepared by the various procedures are described.
    Type of Medium: Online Resource
    ISSN: 0264-6021
    RVK:
    Language: English
    Publisher: Portland Press Ltd.
    Publication Date: 1977
    detail.hit.zdb_id: 1473095-9
    SSG: 12
    Location Call Number Limitation Availability
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