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ENU 诱导的 Twist1 反式激活结构域突变导致后肢多指,具有完全外显率,并以显性负性方式损害 E2A 依赖性转录。

An ENU-induced mutation in Twist1 transactivation domain causes hindlimb polydactyly with complete penetrance and dominant-negatively impairs E2A-dependent transcription.

机构信息

Tsinghua-Peking Joint Center for Life Sciences, Beijing, China.

School of Life Sciences, Tsinghua University, Beijing, China.

出版信息

Sci Rep. 2020 Feb 12;10(1):2501. doi: 10.1038/s41598-020-59455-9.

Abstract

Twist1 encodes a basic helix-loop-helix transcription factor (TF), which forms homodimer or heterodimer with other TFs, like E2A, to regulate target genes' expression. Mutations in TWIST1 are associated with Saethre-Chotzen syndrome (SCS), a rare congenital disorder characterized with osteogenesis abnormalities. However, how dysfunction of TWIST1 leads to SCS is still largely unknown. Here, using an unbiased ENU-induced mutagenesis screening, we identified a novel Twist1 mutation and the mutant mouse phenocopies some features of SCS in a dominant manner. Physically, our mutation p.F191S lies at the edge of a predicted α-helix in Twist1 transactivation (TA) domain. Adjacent to F191, a consecutive three-residue (AFS) has been hit by 3 human and 2 mouse disease-associated mutations, including ours. Unlike previously reported mouse null and p.S192P alleles that lead to hindlimb polydactyly with incomplete penetrance but a severe craniofacial malformation, our p.F191S causes the polydactyly (84.2% bilateral and 15.8% unilateral) with complete penetrance but a mild craniofacial malformation. Consistent with the higher penetrance, p.F191S has stronger impairment on E2A-dependent transcription than p.S192P. Although human p.A186T and mouse p.S192P disease mutations are adjacent to ours, these three mutations function differently to impair the E2A-dependent transcription. Unlike p.A186T and p.S192S that disturb local protein conformation and unstabilize the mutant proteins, p.F191S keeps the mutant protein stable and its interaction with E2A entire. Therefore, we argue that p.F191S we identified acts in a dominant-negative manner to impair E2A-dependent transcription and to cause the biological consequences. In addition, the mutant mouse we provided here could be an additional and valuable model for better understanding the disease mechanisms underlying SCS caused by TWIST1 dysfunction.

摘要

Twist1 编码一种基本的螺旋-环-螺旋转录因子 (TF),它与 E2A 等其他 TF 形成同源二聚体或异源二聚体,以调节靶基因的表达。TWIST1 突变与 Saethre-Chotzen 综合征 (SCS) 有关,这是一种罕见的先天性疾病,其特征为骨生成异常。然而,TWIST1 功能障碍如何导致 SCS 仍知之甚少。在这里,我们使用一种无偏的ENU 诱导诱变筛选,鉴定出一种新型 Twist1 突变,该突变以显性方式模拟 SCS 的一些特征。从表型上看,我们的突变 p.F191S 位于 Twist1 反式激活 (TA) 结构域中一个预测的 α-螺旋的边缘。在 F191 旁边,连续的三个残基 (AFS) 已经受到 3 个人类和 2 个小鼠疾病相关突变的影响,包括我们的突变。与之前报道的导致后肢多指且不完全外显但颅面畸形严重的小鼠 null 和 p.S192P 等位基因不同,我们的 p.F191S 导致多指(84.2%双侧和 15.8%单侧)完全外显,但颅面畸形较轻。与更高的外显率一致,p.F191S 对 E2A 依赖性转录的影响强于 p.S192P。尽管人类 p.A186T 和小鼠 p.S192P 疾病突变与我们的突变相邻,但这三种突变以不同的方式起作用以损害 E2A 依赖性转录。与扰乱局部蛋白质构象并使突变蛋白不稳定的 p.A186T 和 p.S192P 不同,p.F191S 使突变蛋白稳定并保持其与 E2A 的完整相互作用。因此,我们认为我们鉴定的 p.F191S 以显性负性方式起作用,以损害 E2A 依赖性转录并引起生物学后果。此外,我们提供的这种突变小鼠可以是更好地理解 TWIST1 功能障碍导致 SCS 的疾病机制的另一个有价值的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff0/7016005/ca72a367b4bf/41598_2020_59455_Fig1_HTML.jpg

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