Department of Neurology, The Eleventh Clinical Medical College of Qingdao University, Linyi People's Hospital, Linyi, China.
Department of Geriatric Medicine, The Affiliated Hospital of Qingdao University, Qingdao, China.
Dev Neurobiol. 2021 Mar;81(2):79-91. doi: 10.1002/dneu.22795. Epub 2020 Dec 14.
Ash1l potentially contributes to neurodevelopmental diseases. Although specific Ash1l mutations are rare, they have led to informative studies in animal models that may bring therapeutic advances. Ash1l is highly expressed in the brain and correlates with the neuropathology of Tourette syndrome (TS), autism spectrum disorder, and intellectual disability during development, implicating shared epigenetic factors and overlapping neuropathological mechanisms. Functional convergence of Ash1l generated several significant signaling pathways: chromatin remodeling and transcriptional regulation, protein synthesis and cellular metabolism, and synapse development and function. Here, we systematically review the literature on Ash1l, including its discovery, expression, function, regulation, implication in the nervous system, signaling pathway, mutations, and putative involvement in TS and other neurodevelopmental traits. Such findings highlight Ash1l pleiotropy and the necessity of transcending a single gene to complicated mechanisms of network convergence underlying these diseases. With the progress in functional genomic analysis (highlighted in this review), and although the importance and necessity of Ash1l becomes increasingly apparent in the medical field, further research is required to discover the precise function and molecular regulatory mechanisms related to Ash1l. Thus, a new perspective is proposed for basic scientific research and clinical interventions for cross-disorder diseases.
Ash1l 可能导致神经发育疾病。虽然特定的 Ash1l 突变很少见,但它们在动物模型中进行了有启发性的研究,可能带来治疗上的进展。Ash1l 在大脑中高度表达,与抽动秽语综合征 (TS)、自闭症谱系障碍和发育过程中的智力障碍的神经病理学相关,暗示存在共同的表观遗传因素和重叠的神经病理学机制。Ash1l 的功能趋同产生了几个重要的信号通路:染色质重塑和转录调控、蛋白质合成和细胞代谢以及突触发育和功能。在这里,我们系统地回顾了关于 Ash1l 的文献,包括它的发现、表达、功能、调节、在神经系统中的意义、信号通路、突变以及在 TS 和其他神经发育特征中的潜在作用。这些发现强调了 Ash1l 的多效性,以及超越单一基因来理解这些疾病背后复杂的网络汇聚机制的必要性。随着功能基因组分析的进展(在本文中得到强调),尽管 Ash1l 在医学领域的重要性和必要性日益明显,但仍需要进一步研究来发现与 Ash1l 相关的精确功能和分子调节机制。因此,为跨疾病的基础科学研究和临床干预提出了一个新的视角。