Proteomics

Dataset Information

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RBPMS mediates smooth muscle specific alternative splicing via oligomerization and modulation of trans splicing factor recruitment


ABSTRACT: RBPMS regulates alternative splicing decision via recruiting other trans factors. This experiment aims to investigate the interactome of Strep-II tagged recombinant RBPMS in Hela nuclear extract. The interactome of the full length protein is compared to the construct lacking the far C-terminal 20 amino acids. The “R” series indicates full-length RBPMS pull-down. The “P” series indicates truncated RBPMS pull-down. The “BL” series indicates full length RBPMS pull-down in the absence of nuclear extract input but with bovine serum albumin beads blocking reagent. The “N” series indicates non-baited negative control pull-down.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Permanent Cell Line Cell, Cell Culture

SUBMITTER: Yi Yang  

LAB HEAD: Chris WJ Smith

PROVIDER: PXD037620 | Pride | 2023-10-24

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
P1158_210322_lfq.msf Msf
P1158_BL1.raw Raw
P1158_BL2.raw Raw
P1158_BL3.raw Raw
P1158_N1.raw Raw
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Publications

Cell-type specific regulator RBPMS switches alternative splicing via higher-order oligomerization and heterotypic interactions with other splicing regulators.

Yang Yi Y   Lee Giselle C GC   Nakagaki-Silva Erick E   Huang Yuling Y   Peacey Matthew M   Partridge Ruth R   Gooding Clare C   Smith Christopher W J CWJ  

Nucleic acids research 20231001 18


Alternative pre-mRNA splicing decisions are regulated by RNA binding proteins (RBPs) that can activate or repress regulated splice sites. Repressive RBPs typically harness multivalent interactions to bind stably to target RNAs. Multivalency can be achieved by homomeric oligomerization and heteromeric interactions with other RBPs, often mediated by intrinsically disordered regions (IDRs), and by possessing multiple RNA binding domains. Cell-specific splicing decisions often involve the action of  ...[more]

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