A higher order PUF complex is central to regulation of C. elegans germline stem cells

C Chen Qiu S Sarah L. Crittenden B Brian H. Carrick L Lucas B. Dillard S Stephany J. Costa Dos Santos V Venkata P. Dandey R Robert C. Dutcher E Elizabeth G. Viverette R Robert N. Wine J Jennifer Woodworth Z Zachary T. Campbell M Marvin Wickens M Mario J. Borgnia J Judith Kimble T Traci M. Tanaka Hall

Abstract

AbstractPUF RNA-binding proteins are broadly conserved stem cell regulators. Nematode PUF proteins maintain germline stem cells (GSCs) and, with key partner proteins, repress differentiation mRNAs, including gld-1. Here we report that PUF protein FBF-2 and its partner LST-1 form a ternary complex that represses gld-1 via a pair of adjacent FBF binding elements (FBEs) in its 3′UTR. One LST-1 molecule links two FBF-2 molecules via motifs in the LST-1 intrinsically-disordered region; the gld-1 FBE pair includes a well-established ‘canonical’ FBE and a newly-identified noncanonical FBE. Remarkably, this FBE pair drives both full RNA repression in GSCs and full RNA activation upon differentiation. Discoveries of the LST-1–FBF-2 ternary complex, the gld-1 adjacent FBEs, and their in vivo significance predict an expanded regulatory repertoire of different assemblies of PUF-partner-RNA higher order complexes in nematode GSCs. This also suggests analogous PUF controls may await discovery in other biological contexts and organisms.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 02, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

C

Chen Qiu

S

Sarah L. Crittenden

B

Brian H. Carrick

L

Lucas B. Dillard

S

Stephany J. Costa Dos Santos

V

Venkata P. Dandey

R

Robert C. Dutcher

E

Elizabeth G. Viverette

R

Robert N. Wine

J

Jennifer Woodworth

Z

Zachary T. Campbell

M

Marvin Wickens

M

Mario J. Borgnia

J

Judith Kimble

T

Traci M. Tanaka Hall