School of Nursing, Healthcare Genetics Program, Clemson University, Clemson, SC 29634, USA.
Division of Pediatric Gastroenterology, Hepatology, and Nutrition, Indiana University, Riley Hospital for Children, Indianapolis, IN 46202, USA.
Genes (Basel). 2023 Feb 15;14(2):490. doi: 10.3390/genes14020490.
Phelan-McDermid syndrome (PMS), caused by pathogenic variants in the gene or 22q13 deletions, is characterized by intellectual disability, autistic features, developmental delays, and neonatal hypotonia. Insulin-like growth factor 1 (IGF-1) and human growth hormone (hGH) have been shown to reverse neurobehavioral deficits in PMS. We assessed the metabolic profiling of 48 individuals with PMS and 50 controls and determined subpopulations by taking the top and bottom 25% of responders to hGH and IGF-1. A distinct metabolic profile for individuals with PMS showed a reduced ability to metabolize major energy sources and a higher metabolism of alternative energy sources. The analysis of the metabolic response to hGH or IGF-1 highlighted a major overlap between both high and low responders, validating the model and suggesting that the two growth factors share many target pathways. When we investigated the effect of hGH and IGF-1 on the metabolism of glucose, the correlation between the high-responder subgroups showed less similarity, whereas the low-responders were still relatively similar. Classification of individuals with PMS into subgroups based on responses to a compound can allow an investigation into pathogenic mechanisms, the identification of molecular biomarkers, an exploration of in vitro responses to candidate drugs, and eventually the selection of better candidates for clinical trials.
佩兰-麦克德米德综合征(PMS)由 基因或 22q13 缺失的致病性变异引起,其特征为智力残疾、自闭症特征、发育迟缓以及新生儿低张力。胰岛素样生长因子 1(IGF-1)和人生长激素(hGH)已被证明可逆转 PMS 的神经行为缺陷。我们评估了 48 名 PMS 患者和 50 名对照者的代谢特征,并通过对 hGH 和 IGF-1 的高反应者和低反应者的前 25%和后 25%进行分组,确定了亚群。PMS 患者的独特代谢特征显示出其主要能源物质代谢能力降低,替代能源物质代谢增加。对 hGH 或 IGF-1 代谢反应的分析强调了高反应者和低反应者之间的主要重叠,验证了该模型,并表明这两种生长因子具有许多共同的靶途径。当我们研究 hGH 和 IGF-1 对葡萄糖代谢的影响时,高反应者亚组之间的相关性不太相似,而低反应者仍相对相似。基于对化合物的反应对 PMS 患者进行分组,可以深入研究发病机制、确定分子生物标志物、探索候选药物的体外反应,最终为临床试验选择更好的候选药物。