Department of Developmental Biology, Instituto de Biología Molecular de Barcelona, Consejo Superior de Investigaciones Científicas, Barcelona, 08028 Spain.
Department of Biochemistry and Molecular Pharmacology, New York University Grossman School of Medicine, New York, NY 10016.
Proc Natl Acad Sci U S A. 2022 Aug 2;119(31):e2123467119. doi: 10.1073/pnas.2123467119. Epub 2022 Jul 26.
Capicua (Cic) proteins are conserved HMG-box transcriptional repressors that control receptor tyrosine kinase (RTK) signaling responses and are implicated in human neurological syndromes and cancer. While Cic is known to exist as short (Cic-S) and long (Cic-L) isoforms with identical HMG-box and associated core regions but distinct N termini, most previous studies have focused on Cic-S, leaving the function of Cic-L unexplored. Here we show that Cic-L acts in two capacities during oogenesis: 1) as a canonical sensor of RTK signaling in somatic follicle cells, and 2) as a regulator of postmitotic growth in germline nurse cells. In these latter cells, Cic-L behaves as a temporal signal that terminates endoreplicative growth before they dump their contents into the oocyte. We show that Cic-L is necessary and sufficient for nurse cell endoreplication arrest and induces both stabilization of CycE and down-regulation of Myc. Surprisingly, this function depends mainly on the Cic-L-specific N-terminal module, which is capable of acting independently of the Cic HMG-box-containing core. Mirroring these observations, basal metazoans possess truncated Cic-like proteins composed only of Cic-L N-terminal sequences, suggesting that this module plays unique, ancient roles unrelated to the canonical function of Cic.
Cic 蛋白是一种保守的 HMG 盒转录抑制因子,它可以控制受体酪氨酸激酶(RTK)信号反应,并与人类神经综合征和癌症有关。虽然 Cic 已知存在短(Cic-S)和长(Cic-L)两种异构体,它们具有相同的 HMG 盒和相关的核心区域,但 N 端不同,但大多数先前的研究都集中在 Cic-S 上,而 Cic-L 的功能尚未得到探索。在这里,我们表明 Cic-L 在卵子发生过程中具有两种作用:1)作为体细胞滤泡细胞中 RTK 信号的经典传感器,2)作为生殖细胞滋养细胞有丝后生长的调节剂。在后一种细胞中,Cic-L 作为一个时间信号,在它们将内容物倾倒到卵母细胞之前终止内复制生长。我们表明,Cic-L 对于滋养细胞内复制的阻滞是必需的和充分的,并且诱导 CycE 的稳定和 Myc 的下调。令人惊讶的是,这个功能主要依赖于 Cic-L 特异性的 N 端模块,它能够独立于包含 Cic-HMG 盒的核心发挥作用。与这些观察结果相呼应的是,基底后生动物只含有 Cic-L N 端序列的截断的 Cic 样蛋白,这表明这个模块发挥着独特的、古老的作用,与 Cic 的典型功能无关。