Singh Aditi, Häußermann Lilia, Emmerich Christiane, Nischwitz Emily, Seah Brandon K B, Butter Falk, Nowacki Mariusz, Swart Estienne C
Max Planck Institute for Biology, 72076 Tübingen, Germany;
Max Planck Institute for Biology, 72076 Tübingen, Germany.
Genome Res. 2025 Jan 22;35(1):93-108. doi: 10.1101/gr.278402.123.
One of the most extensive forms of natural genome editing occurs in ciliates, a group of microbial eukaryotes. Ciliate germline and somatic genomes are contained in distinct nuclei within the same cell. During the massive reorganization process of somatic genome development, ciliates eliminate tens of thousands of DNA sequences from a germline genome copy. Recently, we showed that the chromatin remodeler ISWI1 is required for somatic genome development in the ciliate Here, we describe two high similarity paralogous proteins, ICOPa and ICOPb, essential for their genome editing. ICOPa and ICOPb are highly divergent from known proteins; the only domain detected showed distant homology with the WSD (WHIM2 + WHIM3) motif. We show that both ICOPa and ICOPb interact with the chromatin remodeler ISWI1. Upon knockdown, changes in alternative DNA excision boundaries and nucleosome densities are similar to those observed for knockdown. We thus propose that a complex comprising ISWI1 and either or both ICOPa and ICOPb are needed for 's precise genome editing.
自然基因组编辑最广泛的形式之一发生在纤毛虫中,纤毛虫是一群微生物真核生物。纤毛虫的种系基因组和体细胞基因组包含在同一细胞内不同的细胞核中。在体细胞基因组发育的大规模重组过程中,纤毛虫从种系基因组拷贝中消除了数以万计的DNA序列。最近,我们发现染色质重塑因子ISWI1是纤毛虫体细胞基因组发育所必需的。在这里,我们描述了两种高度相似的旁系同源蛋白ICOPa和ICOPb,它们对纤毛虫的基因组编辑至关重要。ICOPa和ICOPb与已知蛋白有很大差异;检测到的唯一结构域与WSD(WHIM2 + WHIM3)基序有远缘同源性。我们发现ICOPa和ICOPb都与染色质重塑因子ISWI1相互作用。敲低后,替代DNA切除边界和核小体密度的变化与敲低时观察到的变化相似。因此,我们提出,ISWI1与ICOPa和ICOPb中的一个或两个组成的复合物是纤毛虫精确基因组编辑所必需的。