Centre for Interdisciplinary Research in Biology (CIRB), Collège de France, CNRS UMR7241, INSERM U1050, Labex MemoLife, PSL University, 75005 Paris, France.
Genomics Core Facility, Institut de Biologie de l'ENS (IBENS), Département de Biologie, École Normale Supérieure, CNRS, INSERM, PSL University, 75005 Paris, France.
Int J Mol Sci. 2021 Aug 19;22(16):8951. doi: 10.3390/ijms22168951.
The choroid plexus is an important blood barrier that secretes cerebrospinal fluid, which essential for embryonic brain development and adult brain homeostasis. The OTX2 homeoprotein is a transcription factor that is critical for choroid plexus development and remains highly expressed in adult choroid plexus. Through RNA sequencing analyses of constitutive and conditional knockdown adult mouse models, we reveal putative functional roles for OTX2 in adult choroid plexus function, including cell signaling and adhesion, and show that OTX2 regulates the expression of factors that are secreted into the cerebrospinal fluid, notably transthyretin. We also show that expression impacts choroid plexus immune and stress responses, and affects splicing, leading to changes in the mRNA isoforms of proteins that are implicated in the oxidative stress response and DNA repair. Through mass spectrometry analysis of OTX2 protein partners in the choroid plexus, and in known non-cell-autonomous target regions, such as the visual cortex and subventricular zone, we identify putative targets that are involved in cell adhesion, chromatin structure, and RNA processing. Thus, OTX2 retains important roles for regulating choroid plexus function and brain homeostasis throughout life.
脉络丛是一种重要的血脑屏障,它分泌脑脊液,这对于胚胎大脑发育和成人大脑内环境稳定至关重要。OTX2 同源盒蛋白是一种转录因子,对脉络丛的发育至关重要,并在成年脉络丛中高度表达。通过对组成型和条件性敲低成年小鼠模型的 RNA 测序分析,我们揭示了 OTX2 在成年脉络丛功能中的潜在功能作用,包括细胞信号和黏附,并表明 OTX2 调节分泌到脑脊液中的因子的表达,特别是转甲状腺素蛋白。我们还表明,表达影响脉络丛的免疫和应激反应,并影响剪接,导致参与氧化应激反应和 DNA 修复的蛋白质的 mRNA 异构体发生变化。通过对脉络丛中 OTX2 蛋白伴侣的质谱分析,以及在已知的非细胞自主靶区,如视皮层和脑室下区,我们确定了可能涉及细胞黏附、染色质结构和 RNA 处理的靶标。因此,OTX2 在整个生命过程中仍然保留着调节脉络丛功能和大脑内环境稳定的重要作用。