Dekker Esmée, de Winter Twan J J, Muñoz Garcia Amadeo, de Graaf Natascha, Roodzant Maaike J, de Koning Eelco J P, Carlotti Françoise
Department of Internal Medicine, Leiden University Medical Center (LUMC), Leiden, the Netherlands.
Diabetologia. 2025 Jun 5. doi: 10.1007/s00125-025-06457-9.
AIMS/HYPOTHESIS: Identifying signalling pathways that are important in pancreatic beta cell stress and failure can give insight into possible treatment options to prevent the loss of functional beta cell mass in diabetes. The bone morphogenetic protein (BMP)/SMAD family member BMP5 has been reported to be specifically expressed in human beta cells, but its function is unknown. Here we hypothesised that BMP5 plays a role in the maintenance of beta cell function.
We assessed the expression of BMP5 in publicly available single-cell RNA sequencing (scRNA-seq) datasets of primary human pancreatic islet cells from donors with or without type 2 diabetes, or islets exposed to stress conditions. Human islets and EndoC-βH1 cells were exposed to recombinant BMP5 and used for gene analysis, mitochondrial respiration and glucose-stimulated insulin secretion tests. In addition, we performed lentivirus-mediated knockdown using short hairpin RNAs targeting BMP5 in human islets and EndoC-βH1 cells for gene expression and glucose-stimulated insulin secretion analyses.
scRNA-seq data revealed that BMP5 is the most predominantly expressed BMP ligand in beta cells. BMP5 and its target genes are upregulated in beta cells from donors with type 2 diabetes. Enhanced BMP5 signalling triggered an upregulation of stress-related genes, and a reduction in glucose-stimulated mitochondrial oxygen consumption and insulin secretion. In contrast, downregulation of BMP5 in primary human islets enhanced beta cell function, which was associated with increased expression of key beta cell genes.
CONCLUSIONS/INTERPRETATION: Altogether, these findings point toward a role for BMP5 in the regulation of beta cell function.
目的/假设:确定在胰腺β细胞应激和功能衰竭中起重要作用的信号通路,有助于深入了解预防糖尿病功能性β细胞数量减少的可能治疗方案。据报道,骨形态发生蛋白(BMP)/SMAD家族成员BMP5在人β细胞中特异性表达,但其功能尚不清楚。在此,我们假设BMP5在维持β细胞功能中发挥作用。
我们评估了BMP5在公开的单细胞RNA测序(scRNA-seq)数据集中的表达,这些数据集来自患有或未患有2型糖尿病的供体的原代人胰岛细胞,或暴露于应激条件下的胰岛。将人胰岛和EndoC-βH1细胞暴露于重组BMP5,并用于基因分析、线粒体呼吸和葡萄糖刺激的胰岛素分泌测试。此外,我们使用针对人胰岛和EndoC-βH1细胞中BMP5的短发夹RNA进行慢病毒介导的敲低,以进行基因表达和葡萄糖刺激的胰岛素分泌分析。
scRNA-seq数据显示,BMP5是β细胞中表达最主要的BMP配体。BMP5及其靶基因在2型糖尿病供体的β细胞中上调。增强的BMP5信号传导引发应激相关基因的上调,以及葡萄糖刺激的线粒体氧消耗和胰岛素分泌的减少。相反,原代人胰岛中BMP5的下调增强了β细胞功能,这与关键β细胞基因的表达增加有关。
结论/解读:总之,这些发现表明BMP5在β细胞功能调节中发挥作用。