Department of Pathology, University of Washington, Seattle, WA 98195, USA.
Center for Integrative Brain Research, Seattle Children's Research Institute, Seattle, WA 98101, USA.
Cereb Cortex. 2021 Aug 26;31(10):4808-4824. doi: 10.1093/cercor/bhab124.
Human AUTS2 mutations are linked to a syndrome of intellectual disability, autistic features, epilepsy, and other neurological and somatic disorders. Although it is known that this unique gene is highly expressed in developing cerebral cortex, the molecular and developmental functions of AUTS2 protein remain unclear. Using proteomics methods to identify AUTS2 binding partners in neonatal mouse cerebral cortex, we found that AUTS2 associates with multiple proteins that regulate RNA transcription, splicing, localization, and stability. Furthermore, AUTS2-containing protein complexes isolated from cortical tissue bound specific RNA transcripts in RNA immunoprecipitation and sequencing assays. Deletion of all major functional isoforms of AUTS2 (full-length and C-terminal) by conditional excision of exon 15 caused breathing abnormalities and neonatal lethality when Auts2 was inactivated throughout the developing brain. Mice with limited inactivation of Auts2 in cerebral cortex survived but displayed abnormalities of cerebral cortex structure and function, including dentate gyrus hypoplasia with agenesis of hilar mossy neurons, and abnormal spiking activity on EEG. Also, RNA transcripts that normally associate with AUTS2 were dysregulated in mutant mice. Together, these findings indicate that AUTS2 regulates RNA metabolism and is essential for development of cerebral cortex, as well as subcortical breathing centers.
人类 AUTS2 突变与智力障碍、自闭症特征、癫痫和其他神经及躯体疾病的综合征有关。虽然已知该独特基因在发育中的大脑皮层中高度表达,但 AUTS2 蛋白的分子和发育功能仍不清楚。我们使用蛋白质组学方法鉴定了新生小鼠大脑皮层中 AUTS2 的结合伙伴,发现 AUTS2 与多个调节 RNA 转录、剪接、定位和稳定性的蛋白质相互作用。此外,从皮质组织中分离出的包含 AUTS2 的蛋白质复合物在 RNA 免疫沉淀和测序分析中结合特定的 RNA 转录本。通过条件性切除外显子 15 ,完全缺失 AUTS2 的所有主要功能亚型(全长和 C 末端),当 Auts2 在整个发育中的大脑中失活时,会导致呼吸异常和新生期致死。大脑皮层中 Auts2 有限失活的小鼠存活下来,但表现出大脑皮层结构和功能的异常,包括齿状回发育不良和颗粒细胞下神经元缺失,以及 EEG 上的异常放电活动。此外,通常与 AUTS2 相关的 RNA 转录本在突变小鼠中失调。总之,这些发现表明 AUTS2 调节 RNA 代谢,对大脑皮层以及皮质下呼吸中枢的发育至关重要。