» Articles » PMID: 39448580

Sequence and Structural Determinants of RNAPII CTD Phase-separation and Phosphorylation by CDK7

Overview
Journal Nat Commun
Specialty Biology
Date 2024 Oct 25
PMID 39448580
Authors
Affiliations
Soon will be listed here.
Abstract

The intrinsically disordered carboxy-terminal domain (CTD) of the largest subunit of RNA Polymerase II (RNAPII) consists of multiple tandem repeats of the consensus heptapeptide Y1-S2-P3-T4-S5-P6-S7. The CTD promotes liquid-liquid phase-separation (LLPS) of RNAPII in vivo. However, understanding the role of the conserved heptad residues in LLPS is hampered by the lack of direct biochemical characterization of the CTD. Here, we generated a systematic array of CTD variants to unravel the sequence-encoded molecular grammar underlying the LLPS of the human CTD. Using in vitro experiments and molecular dynamics simulations, we report that the aromaticity of tyrosine and cis-trans isomerization of prolines govern CTD phase-separation. The cis conformation of prolines and β-turns in the SPXX motif contribute to a more compact CTD ensemble, enhancing interactions among CTD residues. We further demonstrate that prolines and tyrosine in the CTD consensus sequence are required for phosphorylation by Cyclin-dependent kinase 7 (CDK7). Under phase-separation conditions, CDK7 associates with the surface of the CTD droplets, drastically accelerating phosphorylation and promoting the release of hyperphosphorylated CTD from the droplets. Our results highlight the importance of conformationally restricted local structures within spacer regions, separating uniformly spaced tyrosine stickers of the CTD heptads, which are required for CTD phase-separation.

Citing Articles

Sequence and structural determinants of RNAPII CTD phase-separation and phosphorylation by CDK7.

Linhartova K, Falginella F, Matl M, Sebesta M, Vacha R, Stefl R Nat Commun. 2024; 15(1):9163.

PMID: 39448580 PMC: 11502803. DOI: 10.1038/s41467-024-53305-2.

References
1.
van Teijlingen A, Smith M, Tuttle T . Short Peptide Self-Assembly in the Martini Coarse-Grain Force Field Family. Acc Chem Res. 2023; 56(6):644-654. PMC: 10035038. DOI: 10.1021/acs.accounts.2c00810. View

2.
Mikhaleva S, Lemke E . Beyond the Transport Function of Import Receptors: What's All the FUS about?. Cell. 2018; 173(3):549-553. PMC: 7611746. DOI: 10.1016/j.cell.2018.04.002. View

3.
Schutkowski M, Bernhardt A, Zhou X, Shen M, Reimer U, Rahfeld J . Role of phosphorylation in determining the backbone dynamics of the serine/threonine-proline motif and Pin1 substrate recognition. Biochemistry. 1998; 37(16):5566-75. DOI: 10.1021/bi973060z. View

4.
Wang J, Tochio N, Kawasaki R, Tamari Y, Xu N, Uewaki J . Allosteric Breakage of the Hydrogen Bond within the Dual-Histidine Motif in the Active Site of Human Pin1 PPIase. Biochemistry. 2015; 54(33):5242-53. DOI: 10.1021/acs.biochem.5b00606. View

5.
Lu K, Finn G, Lee T, Nicholson L . Prolyl cis-trans isomerization as a molecular timer. Nat Chem Biol. 2007; 3(10):619-29. DOI: 10.1038/nchembio.2007.35. View