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对……进行突变扫描可对临床变异进行分类并揭示转录效应域的生化特性。 (原句中“of”后面缺少具体内容)

Mutational scanning of classifies clinical variants and reveals biochemical properties of the transcriptional effector domain.

作者信息

Shepherdson James L, Granas David M, Li Jie, Shariff Zara, Plassmeyer Stephen P, Holehouse Alex S, White Michael A, Cohen Barak A

机构信息

Department of Genetics, Washington University School of Medicine in St. Louis, St. Louis, MO 63110.

Edison Family Center for Genome Sciences & Systems Biology, Washington University School of Medicine in St. Louis, St. Louis, MO 63110.

出版信息

bioRxiv. 2024 Mar 27:2024.03.21.585809. doi: 10.1101/2024.03.21.585809.

Abstract

Cone-Rod Homeobox, encoded by , is a transcription factor (TF) essential for the terminal differentiation and maintenance of mammalian photoreceptors. Structurally, CRX comprises an ordered DNA-binding homeodomain and an intrinsically disordered transcriptional effector domain. Although a handful of human variants in have been shown to cause several different degenerative retinopathies with varying cone and rod predominance, as with most human disease genes the vast majority of observed genetic variants are uncharacterized variants of uncertain significance (VUS). We performed a deep mutational scan (DMS) of nearly all possible single amino acid substitution variants in CRX, using an engineered cell-based transcriptional reporter assay. We measured the ability of each CRX missense variant to transactivate a synthetic fluorescent reporter construct in a pooled fluorescence-activated cell sorting assay and compared the activation strength of each variant to that of wild-type CRX to compute an activity score, identifying thousands of variants with altered transcriptional activity. We calculated a statistical confidence for each activity score derived from multiple independent measurements of each variant marked by unique sequence barcodes, curating a high-confidence list of nearly 2,000 variants with significantly altered transcriptional activity compared to wild-type CRX. We evaluated the performance of the DMS assay as a clinical variant classification tool using gold-standard classified human variants from ClinVar, and determined that activity scores could be used to identify pathogenic variants with high specificity. That this performance could be achieved using a synthetic reporter assay in a foreign cell type, even for a highly cell type-specific TF like CRX, suggests that this approach shows promise for DMS of other TFs that function in cell types that are not easily accessible. Per-position average activity scores closely aligned to a predicted structure of the ordered homeodomain and demonstrated position-specific residue requirements. The intrinsically disordered transcriptional effector domain, by contrast, displayed a qualitatively different pattern of substitution effects, following compositional constraints without specific residue position requirements in the peptide chain. The observed compositional constraints of the effector domain were consistent with the acidic exposure model of transcriptional activation. Together, the results of the DMS identify molecular features of the CRX effector domain and demonstrate clinical utility for variant classification.

摘要

由[基因名称]编码的视锥-视杆同源框(Cone-Rod Homeobox,CRX)是一种转录因子(TF),对哺乳动物光感受器的终末分化和维持至关重要。在结构上,CRX由一个有序的DNA结合同源结构域和一个内在无序的转录效应结构域组成。尽管已表明[基因名称]中的少数人类变体可导致几种不同的退行性视网膜病变,视锥和视杆的优势程度各不相同,但与大多数人类疾病基因一样,绝大多数观察到的[基因名称]遗传变体是意义未明的不确定变体(VUS)。我们使用基于工程细胞的转录报告基因检测方法,对CRX中几乎所有可能的单氨基酸替代变体进行了深度突变扫描(DMS)。我们在汇集的荧光激活细胞分选检测中测量了每个CRX错义变体激活合成荧光报告基因构建体的能力,并将每个变体的激活强度与野生型CRX的激活强度进行比较,以计算活性评分,从而鉴定出数千个转录活性改变的变体。我们为每个活性评分计算了一个统计置信度,该评分来自对每个带有独特序列条形码的变体的多次独立测量,整理出一份与野生型CRX相比转录活性有显著改变的近2000个变体的高置信度列表。我们使用来自ClinVar的金标准分类人类变体评估了DMS检测作为临床变体分类工具的性能,并确定活性评分可用于高特异性地鉴定致病变体。即使对于像CRX这样高度细胞类型特异性的TF,在异源细胞类型中使用合成报告基因检测也能实现这种性能,这表明这种方法对于在不易获取的细胞类型中发挥作用的其他TF的DMS具有前景。每个位置的平均活性评分与有序同源结构域的预测结构紧密对齐,并显示出位置特异性的残基要求。相比之下,内在无序的转录效应结构域表现出质上不同的替代效应模式,遵循组成限制,肽链中没有特定的残基位置要求。观察到的效应结构域的组成限制与转录激活的酸性暴露模型一致。总之,DMS的结果确定了CRX效应结构域的分子特征,并证明了其在变体分类中的临床应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b660/10996540/2a43795b494e/nihpp-2024.03.21.585809v1-f0001.jpg

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