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Connecting the ??-hubs: same fold, disordered ligands, new functions.


ABSTRACT:

Background

Signal fidelity depends on protein-protein interaction-'hubs' integrating cues from large interactomes. Recently, and based on a common secondary structure motif, the ??-hubs were defined, which are small ?-helical domains of large, modular proteins binding intrinsically disordered transcriptional regulators.

Methods

Comparative structural biology.

Results

We assign the harmonin-homology-domain (HHD, also named the harmonin N-terminal domain, NTD) present in large proteins such as harmonin, whirlin, cerebral cavernous malformation 2, and regulator of telomere elongation 1 to the ??-hubs. The new member of the ??-hubs expands functionality to include scaffolding of supra-modular complexes mediating sensory perception, neurovascular integrity and telomere regulation, and reveal novel features of the ??-hubs. As a common trait, the ??-hubs bind intrinsically disordered ligands of similar properties integrating similar cellular cues, but without cross-talk.

Conclusion

The inclusion of the HHD in the ??-hubs has uncovered new features, exemplifying the utility of identifying groups of hub domains, whereby discoveries in one member may cross-fertilize discoveries in others. These features make the ??-hubs unique models for decomposing signal specificity and fidelity. Using these as models, together with other suitable hub domain, we may advance the functional understanding of hub proteins and their role in cellular communication and signaling, as well as the role of intrinsically disordered proteins in signaling networks. Video Abstract.

SUBMITTER: Staby L 

PROVIDER: S-EPMC7788954 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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Publications

Connecting the αα-hubs: same fold, disordered ligands, new functions.

Staby Lasse L   Bugge Katrine K   Falbe-Hansen Rasmus Greve RG   Salladini Edoardo E   Skriver Karen K   Kragelund Birthe B BB  

Cell communication and signaling : CCS 20210106 1


<h4>Background</h4>Signal fidelity depends on protein-protein interaction-'hubs' integrating cues from large interactomes. Recently, and based on a common secondary structure motif, the αα-hubs were defined, which are small α-helical domains of large, modular proteins binding intrinsically disordered transcriptional regulators.<h4>Methods</h4>Comparative structural biology.<h4>Results</h4>We assign the harmonin-homology-domain (HHD, also named the harmonin N-terminal domain, NTD) present in larg  ...[more]

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