ATR-hippo drives force signaling to nuclear F-actin and links mechanotransduction to neurological disorders.

 0 Người đánh giá. Xếp hạng trung bình 0

Tác giả: Luana Campos-Soares, Maria Chatzifrangkeskou, Sayoni Das, Michael Eyres, Roman Fischer, Ben Futcher, Steve Gardner, Simei Go, Alexander Hasson, Delia Koennig, Ashley Newton, Eric O'Neill, Alexandra Perdiou, Paris Skourides, Tess Stanly, Francis Szele, Iolanda Vendrell

Ngôn ngữ: eng

Ký hiệu phân loại: 709.012 *To 4000 B.C.

Thông tin xuất bản: United States : Science advances , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 89141

The mechanical environment is sensed through cell-matrix contacts with the cytoskeleton, but how signals transit the nuclear envelope to affect cell fate decisions remains unknown. Nuclear actin coordinates chromatin motility during differentiation and genome maintenance, yet it remains unclear how nuclear actin responds to mechanical force. The DNA-damage kinase ataxia telangiectasia and Rad3-related protein (ATR) translocates to the nuclear envelope to protect the nucleus during cell motility or compression. Here, we show that ATR drives nuclear actin assembly via recruitment of Filamin-A to the inner nuclear membrane through binding of the hippo pathway scaffold and ATR substrate, RASSF1A. Moreover, we demonstrate how germline RASSF1 mutation disables nuclear mechanotransduction resulting in cerebral cortex thinning and associates with common psychological traits. Thus, defective mechanical-regulated pathways may contribute to complex neurological disorders.
Tạo bộ sưu tập với mã QR

THƯ VIỆN - TRƯỜNG ĐẠI HỌC CÔNG NGHỆ TP.HCM

ĐT: (028) 36225755 | Email: tt.thuvien@hutech.edu.vn

Copyright @2024 THƯ VIỆN HUTECH