Unknown

Dataset Information

0

Alzheimer's disease-associated U1 snRNP splicing dysfunction causes neuronal hyperexcitability and cognitive impairment.


ABSTRACT: Recent proteome and transcriptome profiling of Alzheimer's disease (AD) brains reveals RNA splicing dysfunction and U1 small nuclear ribonucleoprotein (snRNP) pathology containing U1-70K and its N-terminal 40-KDa fragment (N40K). Here we present a causative role of U1 snRNP dysfunction to neurodegeneration in primary neurons and transgenic mice (N40K-Tg), in which N40K expression exerts a dominant-negative effect to downregulate full-length U1-70K. N40K-Tg recapitulates N40K insolubility, erroneous splicing events, neuronal degeneration and cognitive impairment. Specifically, N40K-Tg shows the reduction of GABAergic synapse components (e.g., the GABA receptor subunit of GABRA2), and concomitant postsynaptic hyperexcitability that is rescued by a GABA receptor agonist. Crossing of N40K-Tg and the 5xFAD amyloidosis model indicates that the RNA splicing defect synergizes with the amyloid cascade to remodel the brain transcriptome and proteome, deregulate synaptic proteins, and accelerate cognitive decline. Thus, our results support the contribution of U1 snRNP-mediated splicing dysfunction to AD pathogenesis.

SUBMITTER: Chen PC 

PROVIDER: S-EPMC9833817 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

altmetric image

Publications

Alzheimer's disease-associated U1 snRNP splicing dysfunction causes neuronal hyperexcitability and cognitive impairment.

Chen Ping-Chung PC   Han Xian X   Shaw Timothy I TI   Fu Yingxue Y   Sun Huan H   Niu Mingming M   Wang Zhen Z   Jiao Yun Y   Teubner Brett J W BJW   Eddins Donnie D   Beloate Lauren N LN   Bai Bing B   Mertz Joseph J   Li Yuxin Y   Cho Ji-Hoon JH   Wang Xusheng X   Wu Zhiping Z   Liu Danting D   Poudel Suresh S   Yuan Zuo-Fei ZF   Mancieri Ariana A   Low Jonathan J   Lee Hyeong-Min HM   Patton Mary H MH   Earls Laurie R LR   Stewart Elizabeth E   Vogel Peter P   Hui Yawei Y   Wan Shibiao S   Bennett David A DA   Serrano Geidy E GE   Beach Thomas G TG   Dyer Michael A MA   Smeyne Richard J RJ   Moldoveanu Tudor T   Chen Taosheng T   Wu Gang G   Zakharenko Stanislav S SS   Yu Gang G   Peng Junmin J  

Nature aging 20221012 10


Recent proteome and transcriptome profiling of Alzheimer's disease (AD) brains reveals RNA splicing dysfunction and U1 small nuclear ribonucleoprotein (snRNP) pathology containing U1-70K and its N-terminal 40-KDa fragment (N40K). Here we present a causative role of U1 snRNP dysfunction to neurodegeneration in primary neurons and transgenic mice (N40K-Tg), in which N40K expression exerts a dominant-negative effect to downregulate full-length U1-70K. N40K-Tg recapitulates N40K insolubility, errone  ...[more]

Similar Datasets

2022-08-11 | GSE196873 | GEO
2022-08-11 | GSE196872 | GEO
2022-08-11 | GSE196871 | GEO
| PRJNA807639 | ENA
2022-08-11 | GSE115177 | GEO
| PRJNA807643 | ENA
| PRJNA807644 | ENA
| PRJNA474011 | ENA
| S-EPMC10415773 | biostudies-literature
| S-EPMC5876301 | biostudies-literature