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通过性别和基因型负荷微调PI3K/Akt信号通路强度:体细胞生长的性别依赖性纯合阈值以及中年PDK1 K465E基因敲入和杂合小鼠焦虑表型的雌性化。

Fine-Tuning the PI3K/Akt Signaling Pathway Intensity by Sex and Genotype-Load: Sex-Dependent Homozygotic Threshold for Somatic Growth but Feminization of Anxious Phenotype in Middle-Aged PDK1 K465E Knock-In and Heterozygous Mice.

作者信息

Santana-Santana Mikel, Bayascas José-Ramón, Giménez-Llort Lydia

机构信息

Institut de Neurociències, Universitat Autònoma de Barcelona, 08016 Barcelona, Spain.

Department of Psychiatry and Forensic Medicine, School of Medicine, Universitat Autònoma de Barcelona, 08016 Barcelona, Spain.

出版信息

Biomedicines. 2021 Jun 28;9(7):747. doi: 10.3390/biomedicines9070747.

Abstract

According to the Research Domain Criteria (RDoC), phenotypic differences among disorders may be explained by variations in the nature and degree of neural circuitry disruptions and/or dysfunctions modulated by several biological and environmental factors. We recently demonstrated the in vivo behavioral translation of tweaking the PI3K/Akt signaling, an essential pathway for regulating cellular processes and physiology, and its modulation through aging. Here we describe, for the first time, the in vivo behavioral impact of the sex and genetic-load tweaking this pathway. The anxiety-like phenotypes of 61 mature (11-14-month-old) male and female PDK1 K465E knock-in, heterozygous, and WT mice were studied. Forced (open-field) anxiogenic environmental conditions were sensitive to detect sex and genetic-load differences at middle age. Despite similar neophobia and horizontal activity among the six groups, females exhibited faster ethograms than males, with increased thigmotaxis, increased wall and bizarre rearing. Genotype-load unveiled increased anxiety in males, resembling female performances. The performance of mutants in naturalistic conditions (marble test) was normal. Homozygotic-load was needed for reduced somatic growth only in males. Factor interactions indicated the complex interplay in the elicitation of different negative valence system's items and the fine-tuning of PI3K/Akt signaling pathway intensity by genotype-load and sex.

摘要

根据研究领域标准(RDoC),疾病之间的表型差异可能由多种生物和环境因素调节的神经回路破坏和/或功能障碍的性质和程度的变化来解释。我们最近证明了调节PI3K/Akt信号通路(调节细胞过程和生理的重要途径)及其通过衰老的调节在体内的行为转化。在这里,我们首次描述了性别和基因负荷调节该通路对体内行为的影响。研究了61只成熟(11 - 14个月大)的雄性和雌性PDK1 K465E基因敲入、杂合和野生型小鼠的焦虑样表型。强迫(旷场)致焦虑环境条件对检测中年时的性别和基因负荷差异很敏感。尽管六组之间的新物体恐惧和水平活动相似,但雌性的行为图谱比雄性更快,趋触性增加,靠墙和怪异的竖立体位增加。基因负荷显示雄性焦虑增加,类似于雌性表现。突变体在自然条件下(大理石试验)的表现正常。仅在雄性中,纯合负荷才是体细胞生长减少所必需的。因素相互作用表明,在引发不同负价系统项目以及通过基因负荷和性别对PI3K/Akt信号通路强度进行微调方面存在复杂的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07d7/8301321/1c2e54ad8b23/biomedicines-09-00747-g001.jpg

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