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Structural basis for isoform-specific kinesin-1 recognition of Y-acidic cargo adaptors.


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 (KLCTPR). 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 KLC1TPR 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 KLCTPR with similar low micromolar affinity can exhibit different capacities to promote kinesin-1 activity.

SUBMITTER: Pernigo S 

PROVIDER: S-EPMC6214655 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Structural basis for isoform-specific kinesin-1 recognition of Y-acidic cargo adaptors.

Pernigo Stefano S   Chegkazi Magda S MS   Yip Yan Y YY   Treacy Conor C   Glorani Giulia G   Hansen Kjetil K   Politis Argyris A   Bui Soi S   Dodding Mark P MP   Steiner Roberto A RA  

eLife 20181015


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<sup>TPR</sup>). 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 JI  ...[more]

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