Molecular Immunity Unit, Department of Medicine, University of Cambridge, MRC Laboratory of Molecular Biology, Cambridge CB2 0QH, UK.
Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID), Department of Medicine, University of Cambridge, Cambridge CB2 0AW, UK.
Nucleic Acids Res. 2020 Oct 9;48(18):10313-10328. doi: 10.1093/nar/gkaa785.
Transcription of integrated DNA from viruses or transposable elements is tightly regulated to prevent pathogenesis. The Human Silencing Hub (HUSH), composed of Periphilin, TASOR and MPP8, silences transcriptionally active viral and endogenous transgenes. HUSH recruits effectors that alter the epigenetic landscape and chromatin structure, but how HUSH recognizes target loci and represses their expression remains unclear. We identify the physicochemical properties of Periphilin necessary for HUSH assembly and silencing. A disordered N-terminal domain (NTD) and structured C-terminal domain are essential for silencing. A crystal structure of the Periphilin-TASOR minimal core complex shows Periphilin forms an α-helical homodimer, bound by a single TASOR molecule. The NTD forms insoluble aggregates through an arginine/tyrosine-rich sequence reminiscent of low-complexity regions from self-associating RNA-binding proteins. Residues required for TASOR binding and aggregation were required for HUSH-dependent silencing and genome-wide deposition of repressive mark H3K9me3. The NTD was functionally complemented by low-complexity regions from certain RNA-binding proteins and proteins that form condensates or fibrils. Our work suggests the associative properties of Periphilin promote HUSH aggregation at target loci.
病毒或转座元件的整合 DNA 的转录受到严格调控,以防止发病机制。由 Periphilin、TASOR 和 MPP8 组成的人类沉默中心 (HUSH) 沉默转录活性病毒和内源性转基因。HUSH 招募改变表观遗传景观和染色质结构的效应物,但 HUSH 如何识别靶基因座并抑制其表达尚不清楚。我们确定了 Periphilin 组装和沉默所必需的物理化学特性。无序的 N 端结构域 (NTD) 和结构 C 端结构域对于沉默至关重要。Periphilin-TASOR 最小核心复合物的晶体结构表明,Periphilin 形成一个α螺旋同源二聚体,由单个 TASOR 分子结合。NTD 通过富含精氨酸/酪氨酸的序列形成不溶性聚集体,类似于自我缔合 RNA 结合蛋白的低复杂度区域。TASOR 结合和聚集所需的残基是 HUSH 依赖性沉默和全基因组沉积抑制性标记 H3K9me3 所必需的。NTD 可通过某些 RNA 结合蛋白和形成凝聚物或原纤维的蛋白质的低复杂度区域在功能上得到补充。我们的工作表明,Periphilin 的缔合特性促进了 HUSH 在靶基因座的聚集。