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Identification of phenothiazine derivatives as UHM-binding inhibitors of early spliceosome assembly

Jagtap, Pravin Kumar Ankush ; Kubelka, Tomáš ; Soni, Komal ; Will, Cindy L. ; Garg, Divita ; Sippel, Claudia ; Kapp, Tobias G. ; Potukuchi, Harish Kumar ; Schorpp, Kenji ; Hadian, Kamyar ; Kessler, Horst ; Lührmann, Reinhard ; Hausch, Felix ; Bach, Thorsten ; Sattler, Michael (2024)
Identification of phenothiazine derivatives as UHM-binding inhibitors of early spliceosome assembly.
In: Nature Communications, 2020, 11 (1)
doi: 10.26083/tuprints-00023981
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: Identification of phenothiazine derivatives as UHM-binding inhibitors of early spliceosome assembly
Language: English
Date: 25 September 2024
Place of Publication: Darmstadt
Year of primary publication: 6 November 2020
Place of primary publication: London
Publisher: Springer Nature
Journal or Publication Title: Nature Communications
Volume of the journal: 11
Issue Number: 1
Collation: 11 Seiten
DOI: 10.26083/tuprints-00023981
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Interactions between U2AF homology motifs (UHMs) and U2AF ligand motifs (ULMs) play a crucial role in early spliceosome assembly in eukaryotic gene regulation. UHM-ULM interactions mediate heterodimerization of the constitutive splicing factors U2AF65 and U2AF35 and between other splicing factors that regulate spliceosome assembly at the 3′ splice site, where UHM domains of alternative splicing factors, such as SPF45 and PUF60, contribute to alternative splicing regulation. Here, we performed high-throughput screening using fluorescence polarization assays with hit validation by NMR and identified phenothiazines as general inhibitors of UHM-ULM interactions. NMR studies show that these compounds occupy the tryptophan binding pocket of UHM domains. Co-crystal structures of the inhibitors with the PUF60 UHM domain and medicinal chemistry provide structure-activity-relationships and reveal functional groups important for binding. These inhibitors inhibit early spliceosome assembly on pre-mRNA substrates in vitro. Our data show that spliceosome assembly can be inhibited by targeting UHM-ULM interactions by small molecules, thus extending the toolkit of splicing modulators for structural and biochemical studies of the spliceosome and splicing regulation.

Uncontrolled Keywords: Molecular modelling, NMR spectroscopy, RNA-binding proteins, Structural biology, X-ray crystallography
Identification Number: Artikel-ID: 5621
Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-239811
Classification DDC: 500 Science and mathematics > 540 Chemistry
500 Science and mathematics > 570 Life sciences, biology
Divisions: 07 Department of Chemistry > Clemens-Schöpf-Institut > Fachgebiet Biochemie
Date Deposited: 25 Sep 2024 11:46
Last Modified: 30 Oct 2024 07:51
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/23981
PPN: 522534708
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