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6FUZ

Crystal structure of the TPR domain of KLC1 in complex with the C-terminal peptide of JIP1

Summary for 6FUZ
Entry DOI10.2210/pdb6fuz/pdb
DescriptorKinesin light chain 1,Kinesin light chain 1,C-Jun-amino-terminal kinase-interacting protein 1, nanobody, GLYCEROL, ... (4 entities in total)
Functional Keywordsprotein complex, motor protein, nanobody, cargo recognition
Biological sourceMus musculus (Mouse)
More
Total number of polymer chains2
Total formula weight50789.74
Authors
Pernigo, S.,Dodding, M.P.,Steiner, R.A. (deposition date: 2018-02-28, release date: 2018-05-02, Last modification date: 2024-10-16)
Primary citationPernigo, S.,Chegkazi, M.S.,Yip, Y.Y.,Treacy, C.,Glorani, G.,Hansen, K.,Politis, A.,Bui, S.,Dodding, M.P.,Steiner, R.A.
Structural basis for isoform-specific kinesin-1 recognition of Y-acidic cargo adaptors.
Elife, 7:-, 2018
Cited by
PubMed Abstract: The light chains (KLCs) of the heterotetrameric microtubule motor kinesin-1, that bind to cargo adaptor proteins and regulate its activity, have a capacity to recognize short peptides via their tetratricopeptide repeat domains (KLC). Here, using X-ray crystallography, we show how kinesin-1 recognizes a novel class of adaptor motifs that we call 'Y-acidic' (tyrosine flanked by acidic residues), in a KLC-isoform-specific manner. Binding specificities of Y-acidic motifs (present in JIP1 and in TorsinA) to KLC1 are distinct from those utilized for the recognition of W-acidic motifs, found in adaptors, that are KLC-isoform non-selective. However, a partial overlap on their receptor-binding sites implies that adaptors relying on Y-acidic and W-acidic motifs must act independently. We propose a model to explain why these two classes of motifs that bind to the concave surface of KLC with similar low micromolar affinity can exhibit different capacities to promote kinesin-1 activity.
PubMed: 30320553
DOI: 10.7554/eLife.38362
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.7 Å)
Structure validation

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数据于2024-11-06公开中

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