Division of Endocrinology and Metabolism, School of Medicine, University of California San Diego, La Jolla, CA, 92093, USA.
Signaling Pathways Project and Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX, 77030, USA.
Transl Psychiatry. 2021 Jul 22;11(1):405. doi: 10.1038/s41398-021-01528-y.
Although antipsychotics, such as olanzapine, are effective in the management of psychiatric conditions, some patients experience excessive antipsychotic-induced weight gain (AIWG). To illuminate pathways underlying AIWG, we compared baseline blood gene expression profiles in two cohorts of mice that were either prone (AIWG-P) or resistant (AIWG-R) to weight gain in response to olanzapine treatment for two weeks. We found that transcripts elevated in AIWG-P mice relative to AIWG-R are enriched for high-confidence transcriptional targets of numerous inflammatory and immunomodulatory signaling nodes. Moreover, these nodes are themselves enriched for genes whose disruption in mice is associated with reduced body fat mass and slow postnatal weight gain. In addition, we identified gene expression profiles in common between our mouse AIWG-P gene set and an existing human AIWG-P gene set whose regulation by immunomodulatory transcription factors is highly conserved between species. Finally, we identified striking convergence between mouse AIWG-P transcriptional regulatory networks and those associated with body weight and body mass index in humans. We propose that immunomodulatory transcriptional networks drive AIWG, and that these networks have broader conserved roles in whole body-metabolism.
尽管奥氮平等抗精神病药在精神疾病的治疗中有效,但一些患者会出现抗精神病药引起的体重过度增加(AIWG)。为了阐明 AIWG 的潜在途径,我们比较了两个队列的小鼠在接受奥氮平治疗两周后基线血基因表达谱,这些小鼠要么容易(AIWG-P)发生体重增加,要么抵抗(AIWG-R)体重增加。我们发现,与 AIWG-R 相比,AIWG-P 小鼠中升高的转录本富集了许多炎症和免疫调节信号节点的高可信度转录靶标。此外,这些节点本身富含基因,如果在小鼠中破坏这些基因,则与体脂肪减少和出生后体重增加缓慢有关。此外,我们在我们的小鼠 AIWG-P 基因集中发现了与现有人类 AIWG-P 基因集中共同的基因表达谱,这些基因的免疫调节转录因子的调节在物种间高度保守。最后,我们发现小鼠 AIWG-P 转录调控网络与人类体重和体重指数相关的网络之间存在惊人的趋同。我们提出免疫调节转录网络驱动 AIWG,并且这些网络在全身代谢中有更广泛的保守作用。