Institute of Cardiovascular Regeneration (A.W.H., M.K., A.F., M.M.R., P.G., N.J., S.D.), Goethe University, Frankfurt, Germany.
Faculty for Biological Sciences (A.W.H.), Goethe University, Frankfurt, Germany.
Circ Res. 2022 Jan 7;130(1):67-79. doi: 10.1161/CIRCRESAHA.121.320029. Epub 2021 Nov 18.
Circular RNAs (circRNAs) are generated by back splicing of mostly mRNAs and are gaining increasing attention as a novel class of regulatory RNAs that control various cellular functions. However, their physiological roles and functional conservation in vivo are rarely addressed, given the inherent challenges of their genetic inactivation. Here, we aimed to identify locus conserved circRNAs in mice and humans, which can be genetically deleted due to retained intronic elements not contained in the mRNA host gene to eventually address functional conservation.
Combining published endothelial RNA-sequencing data sets with circRNAs of the circATLAS databank, we identified locus-conserved circRNA retaining intronic elements between mice and humans. CRISPR/Cas9 mediated genetic depletion of the top expressed circRNA cZfp292 resulted in an altered endothelial morphology and aberrant flow alignment in the aorta in vivo. Consistently, depletion of cZNF292 in endothelial cells in vitro abolished laminar flow-induced alterations in cell orientation, paxillin localization and focal adhesion organization. Mechanistically, we identified the protein SDOS (syndesmos) to specifically interact with cZNF292 in endothelial cells by RNA-affinity purification and subsequent mass spectrometry analysis. Silencing of SDOS or its protein binding partner Syndecan-4, or mutation of the SDOS-cZNF292 binding site, prevented laminar flow-induced cytoskeletal reorganization thereby recapitulating cZfp292 knockout phenotypes.
Together, our data reveal a hitherto unknown role of cZNF292/cZfp292 in endothelial flow responses, which influences endothelial shape.
环状 RNA(circRNAs)主要通过 mRNA 的反向剪接产生,作为一类新的调控 RNA,它们控制着各种细胞功能,越来越受到关注。然而,由于其遗传失活的固有挑战,它们在体内的生理作用和功能保守性很少得到解决。在这里,我们旨在鉴定小鼠和人类中具有保守基因座的 circRNAs,由于保留了内含子元件而不包含在 mRNA 宿主基因中,这些 circRNAs 可以被遗传删除,最终解决功能保守性问题。
我们将已发表的内皮细胞 RNA 测序数据集与 circATLAS 数据库中的 circRNAs 相结合,鉴定出了小鼠和人类之间具有保守基因座的环状 RNA 保留内含子元件。CRISPR/Cas9 介导的circZfp292 最高表达的基因敲除导致体内主动脉内皮形态改变和异常血流排列。一致地,体外内皮细胞中 cZNF292 的耗竭消除了层流诱导的细胞取向、桩蛋白定位和焦点粘连组织的改变。从机制上讲,我们通过 RNA 亲和纯化和随后的质谱分析,鉴定出了特定与内皮细胞中的 cZNF292 相互作用的蛋白 SDOS(连接桥粒)。沉默 SDOS 或其蛋白结合伴侣 Syndecan-4,或突变 SDOS-cZNF292 结合位点,可防止层流诱导的细胞骨架重排,从而再现 cZfp292 敲除表型。
总之,我们的数据揭示了 cZNF292/cZfp292 在血管内皮细胞对流动反应中的一个未知作用,该作用影响内皮细胞的形状。