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首页> 外文期刊>Genes to cells : >HMGA1a: sequence-specific RNA-binding factor causing sporadic Alzheimer's disease-linked exon skipping of presenilin-2 pre-mRNA.
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HMGA1a: sequence-specific RNA-binding factor causing sporadic Alzheimer's disease-linked exon skipping of presenilin-2 pre-mRNA.

机译:HMGA1a:序列特异性RNA结合因子,可导致散发性早老性痴呆2前mRNA的阿尔茨海默氏病相关性外显子跳跃。

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摘要

Aberrant exon 5 skipping of presenilin-2 (PS2) pre-mRNA produces a deleterious protein isoform PS2V, which is almost exclusively observed in the brains of sporadic Alzheimer's disease patients. PS2V over-expression in vivo enhances susceptibility to various endoplasmic reticulum (ER) stresses and increases production of amyloid-beta peptides. We previously purified and identified high mobility group A protein 1a (HMGA1a) as a trans-acting factor responsible for aberrant exon 5 skipping. Using heterologous pre-mRNAs, here we demonstrate that a specific HMGA1a-binding sequence in exon 5 adjacent to the 5' splice site is necessary for HMGA1a to inactivate the 5' splice site. An aberrant HMGA1a-U1 snRNP complex was detected on the HMGA1a-binding site adjacent to the 5' splice site during the early splicing reaction. A competitor 2'-O-methyl RNA (2'-O-Me RNA) consisting of the HMGA1a-binding sequence markedly repressed exon 5 skipping of PS2 pre-mRNA in vitro and in vivo. Finally, HMGA1a-induced cell death under ER stress was prevented by transfection of the competitor 2'-O-Me RNA. These results provide insights into the molecular basis for PS2V-associated neurodegenerative diseases that are initiated by specific RNA binding of HMGA1a.
机译:跳过早老素2(PS2)pre-mRNA的异常外显子5会产生有害的蛋白质同工型PS2V,几乎只在散发的阿尔茨海默氏病患者的大脑中观察到该蛋白。体内PS2V的过表达增强了对各种内质网(ER)胁迫的敏感性,并增加了淀粉样β肽的产生。我们先前纯化并鉴定出高迁移率A组蛋白1a(HMGA1a)作为负责异常外显子5跳跃的反式作用因子。使用异源pre-mRNA,我们在这里证明与5'剪接位点相邻的第5外显子中的特定HMGA1a结合序列对于HMGA1a灭活5'剪接位点是必需的。在早期剪接反应过程中,在与5'剪接位点相邻的HMGA1a结合位点上检测到异常的HMGA1a-U1 snRNP复合体。由HMGA1a结合序列组成的竞争对手2'-O-甲基RNA(2'-O-Me RNA)在体内和体外显着抑制了PS2 pre-mRNA的外显子5跳跃。最后,通过转染竞争对手的2'-O-Me RNA可防止内质网应激引起的HMGA1a诱导的细胞死亡。这些结果为PS2V相关的神经退行性疾病的分子基础提供了见识,这种疾病是由HMGA1a的特异性RNA结合引发的。

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