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年龄和性别依赖性 ADNP 对肌肉基因表达的调控与运动行为相关:可能与 PACAP 存在反馈机制。

Age and Sex-Dependent ADNP Regulation of Muscle Gene Expression Is Correlated with Motor Behavior: Possible Feedback Mechanism with PACAP.

机构信息

The Elton Laboratory for Molecular Neuroendocrinology, Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Sagol School of Neuroscience and Adams Super Center for Brain Studies, Tel Aviv University, Tel Aviv 6997801, Israel.

Department of Statistics and Operations Research, School of Mathematical Sciences, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, Tel Aviv 6997801, Israel.

出版信息

Int J Mol Sci. 2020 Sep 14;21(18):6715. doi: 10.3390/ijms21186715.

Abstract

The activity-dependent neuroprotective protein (ADNP), a double-edged sword, sex-dependently regulates multiple genes and was previously associated with the control of early muscle development and aging. Here we aimed to decipher the involvement of ADNP in versatile muscle gene expression patterns in correlation with motor function throughout life. Using quantitative RT-PCR we showed that heterozygous deficiency in mice resulted in aberrant gastrocnemius (GC) muscle, tongue and bladder gene expression, which was corrected by the Adnp snippet, drug candidate, NAP (CP201). A significant sexual dichotomy was discovered, coupled to muscle and age-specific gene regulation. As such, Adnp was shown to regulate myosin light chain () in the gastrocnemius (GC) muscle, the language acquisition gene forkhead box protein P2 () in the tongue and the pituitary-adenylate cyclase activating polypeptide (PACAP) receptor PAC1 mRNA () in the bladder, with PACAP linked to bladder function. A tight age regulation was observed, coupled to an extensive correlation to muscle function (gait analysis), placing ADNP as a muscle-regulating gene/protein.

摘要

活性依赖型神保护蛋白(ADNP)是一把双刃剑,它具有性别依赖性,调节多种基因,之前与控制早期肌肉发育和衰老有关。在这里,我们旨在阐明 ADNP 在与运动功能相关的多种肌肉基因表达模式中的作用。使用定量 RT-PCR,我们发现小鼠的杂合子缺失导致比目鱼肌(GC)肌肉、舌头和膀胱基因表达异常,而 ADNP 片段、候选药物 NAP(CP201)可纠正这种异常。我们发现存在显著的性别二态性,与肌肉和年龄特异性基因调控有关。因此,ADNP 被证明可调节比目鱼肌(GC)肌肉中的肌球蛋白轻链()、舌中的叉头框蛋白 P2()和膀胱中的垂体腺苷酸环化酶激活肽(PACAP)受体 PAC1 mRNA(),而 PACAP 与膀胱功能有关。观察到严格的年龄调节,与肌肉功能(步态分析)广泛相关,将 ADNP 定位为肌肉调节基因/蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d07/7555576/83e7f76e8ad6/ijms-21-06715-g001.jpg

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