Characterization and reversibility of cognitive deficits in a mouse model of Tatton-Brown-Rahman syndrome.
Characterization and reversibility of cognitive deficits in a mouse model of Tatton-Brown-Rahman syndrome.
批准号:
518410300
负责人:
Dr. Ana M. M. Oliveira
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:
中文摘要
Tatton-Brown-Rahman综合征(TBRS)是一种罕见的遗传性神经发育障碍,其特征是身材高大,面部外观独特,智力残疾。TBRS是由DNMT 3A基因中的变异引起的,这些变异是由基因中的从头突变引起的。TBRS无法治愈,治疗的目标是改善症状。最近,几项神经发育疾病动物模型的研究表明,在发育后期替换功能障碍基因或靶向基因相关信号传导可以逆转成年小鼠的认知缺陷。研究进一步证明,与这些疾病相关的基因是终生学习和记忆所持续需要的。因此,这表明在这种情况下,成熟大脑中的基因替换至少恢复了一些疾病表型,如认知能力。我们已发表和未发表的研究结果表明,成年海马中Dnmt 3a编码的酶Dnmt 3a 1和Dnmt 3a 2在记忆形成中发挥作用。因此,可以想象,在成年期恢复TBRS小鼠中的Dnmt 3a功能改善了认知缺陷。本提案将讨论这一假设。这将通过两个主要研究方向来实现。 首先,我们将在最近开发的TBRS小鼠模型中揭示迄今为止未知的脑和神经元功能的改变。我们将描述不同发育阶段的大脑和形态学特征,并分析Dnmt 3aKO/+小鼠在一系列记忆测试中的表现。此外,我们将调查是否神经元的转录反应和激活模式,相关的记忆形成和检索,在这些小鼠中受到影响,如果是这样,他们是否与学习缺陷。其次,我们将在同一模型中讨论认知缺陷和相关细胞功能障碍的可逆性潜力。我们将重点关注已确定的分子,细胞和行为缺陷,并评估成年期的基因替代是否恢复这些功能障碍。总的来说,这项研究计划是准备扩大我们到目前为止非常有限的理解,在TBRS智力残疾的机械原因。它将提供深入了解是否TBRS样表型是不可逆的决定在发展过程中,或者如果至少学习和记忆缺陷是挽救基因靶向成熟神经元。这些发现将为治疗和干预措施的发展铺平道路。
英文摘要
Tatton-Brown-Rahman syndrome (TBRS) is a recently described rare genetic neurodevelopmental disorder characterized by tall stature, a distinctive facial appearance, and intellectual disability. TBRS is caused by variants in the DNMT3A gene that arise from de novo mutations in the gene. There is no cure for TBRS and treatments are targeted at ameliorating symptoms. Recently, several studies of animal models of neurodevelopmental diseases showed that replacing the dysfunctional gene or targeting gene-related signaling at later developmental stages reversed cognitive deficits in adult mice. It was further demonstrated that the genes associated with these disorders are continuously required for learning and memory throughout life. Hence, indicating that in such cases gene replacement in the mature brain restores at least some disease phenotypes, such as cognitive abilities. Our published and unpublished findings demonstrated a role for the Dnmt3a encoded enzymes, Dnmt3a1 and Dnmt3a2, in the adult hippocampus in memory formation. Therefore, it is conceivable that restoring Dnmt3a function in TBRS mice in adulthood ameliorates cognitive deficits. This hypothesis will be addressed in the current proposal. This will be achieved by taking two main research directions. First, we will uncover the so far unknown alterations in brain and neuronal function in a recently developed mouse model of TBRS. We will characterize brain and morphological features at distinct developmental stages and analyze the performance of Dnmt3aKO/+ mice in a battery of memory tests. Moreover, we will investigate whether neuronal transcriptional responses and activation patterns, relevant for memory formation and retrieval, are affected in these mice and if so, whether they correlate with learning deficits. Second, we will address the reversibility potential of cognitive deficits and associated cellular dysfunctions in the same model. We will focus on the identified molecular, cellular, and behavioral deficits and assess whether gene replacement in adulthood restores these dysfunctions. Overall, this research program is primed to expand our so far very limited understanding of the mechanistic causes of intellectual disability in TBRS. It will provide insight into whether TBRS-like phenotypes are irreversibly determined during development or if at least learning and memory deficits are rescuable upon gene targeting of mature neurons. These findings will pave the way to the development of treatments and interventions.
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Dr. Ana M. M. Oliveira
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依托单位:
海外基金