Neural Aging Laboratory, Institute of Molecular Biology, CMBI, University of Innsbruck, Innsbruck, Tyrol, Austria.
Laboratory of Genetics, The Salk Institute for Biological Studies, La Jolla, California, USA.
Cell Reprogram. 2022 Oct;24(5):304-313. doi: 10.1089/cell.2021.0200. Epub 2022 Jul 25.
The direct conversion of adult human skin fibroblasts (FBs) into induced neurons (iNs) represents a useful technology to generate donor-specific adult-like human neurons. Disease modeling studies rely on the consistently efficient conversion of relatively large cohorts of FBs. Despite the identification of several small molecular enhancers, high-yield protocols still demand addition of recombinant Noggin. To identify a replacement to circumvent the technical and economic challenges associated with Noggin, we assessed dynamic gene expression trajectories of transforming growth factor-β signaling during FB-to-iN conversion. We identified ALK2 (ACVR1) of the bone morphogenic protein branch to possess the highest initial transcript abundance in FBs and the steepest decline during successful neuronal conversion. We thus assessed the efficacy of dorsomorphin homolog 1 (DMH1), a highly selective ALK2-inhibitor, for its potential to replace Noggin. Conversion media containing DMH1 (+DMH1) indeed enhanced conversion efficiencies over basic SMAD inhibition (tSMADi), yielding similar βIII-tubulin (TUBB3) purities as conversion media containing Noggin (+Noggin). Furthermore, +DMH1 induced high yields of iNs with clear neuronal morphologies that are positive for the mature neuronal marker NeuN. Validation of +DMH1 for iN conversion of FBs from 15 adult human donors further demonstrates that Noggin-free conversion consistently yields iN cultures that display high βIII-tubulin numbers with synaptic structures and basic spontaneous neuronal activity at a third of the cost.
将成人皮肤成纤维细胞(FBs)直接转化为诱导神经元(iNs)是生成供体特异性成人样人类神经元的有用技术。疾病建模研究依赖于相对大量 FBs 的一致高效转化。尽管已经确定了几种小分子增强子,但高产协议仍然需要添加重组 Noggin。为了确定替代物以避免与 Noggin 相关的技术和经济挑战,我们评估了转化生长因子-β信号在 FB 向 iN 转化过程中的动态基因表达轨迹。我们发现骨形态发生蛋白分支中的 ALK2(ACVR1)在 FBs 中具有最高的初始转录丰度,并且在成功神经元转化过程中下降最快。因此,我们评估了具有高度选择性 ALK2 抑制剂的 Dorsomorphin 类似物 1(DMH1)替代 Noggin 的功效。含有 DMH1 的转化培养基(+DMH1)确实提高了基本 SMAD 抑制(tSMADi)的转化效率,产生与含有 Noggin 的转化培养基(+Noggin)相似的 βIII-微管蛋白(TUBB3)纯度。此外,+DMH1 诱导具有清晰神经元形态的 iNs 的高产量,这些神经元对成熟神经元标志物 NeuN 呈阳性。来自 15 位成年人类供体的 FBs 的 iN 转化的 +DMH1 验证进一步表明,无 Noggin 的转化始终产生 iN 培养物,这些培养物显示出高数量的 βIII-微管蛋白,具有突触结构和基本的自发性神经元活动,成本仅为其三分之一。