The telomeric valine-arginine dipeptide repeat protein changes state to diffuse staining in mitosis and represses in vitro translation
成果类型:
Article
署名作者:
Al-Turki, Taghreed; Mantri, Venkata; Willcox, Smaranda; Mills, C. Allie; Herring, Laura E.; Cho, Su-Ji; Lee, Hannah; Meyer, Caliyn; Anton, E. S.; Griffith, Jack D.
署名单位:
University of North Carolina; University of North Carolina Chapel Hill; University of North Carolina; University of North Carolina Chapel Hill; University of North Carolina; University of North Carolina Chapel Hill; University of North Carolina; University of North Carolina Chapel Hill; University of North Carolina School of Medicine; University of North Carolina; University of North Carolina Chapel Hill; University of North Carolina School of Medicine
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2520441122
发表日期:
2025-11-25
页码:
e2520441122
关键词:
telomere
dipeptide repeat proteins
ribosomes
mitosis
CONTAINING RNA
ggggcc repeat
c9orf72
expansion
transcription
initiation
stress
摘要:
Translation of mammalian G-rich telomeric RNA via the Repeat Associated non-AUG (AUG, the mRNA start codon) mechanism can produce proteins consisting of long repeats of valine-arginine (VR) or glycine-leucine (GL) dipeptides. Their role in the cell has not been elucidated. Using confocal laser scanning microscopy combined with antibody staining we previously observed VR sequestered in punctate bodies and liquid droplets in the cytoplasm and nuclei of nonmitotic cells. Here, we report that cells in mitosis show diffuse VR staining throughout the cell, giving these cells a bright appearance. Upon mitotic enrichment using the cyclin-dependent kinase 1 (CDK1) inhibitor RO-3306. RO-3306, 100% of the mitotic cells showed the same diffuse staining. Antibody staining showed colocalization of VR and the L4 ribosomal protein in mitotic cells and in an in vitro firefly luciferase assay, VR depressed translation. Affinity purification combined with mass spectrometry identified ribosomal proteins as the major class of VR interacting proteins in U2OS cells including L4 along with tubulin and proteins related to neural degenerative diseases. This change from a sequestered, punctate state in interphase to dispersed diffuse staining in mitosis, and the affinity of VR for the L4 protein which lines the ribosomal exit tunnel suggests that an oligomerization change of VR may facilitate its involvement in inhibiting of global translation during mitosis. Extension to mouse embryonic cerebral cortical development showed clear staining in the ventricular zone where neural progenitor cells with a high mitotic index proliferate and in the cortical plate where new neurons settle.
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