Deletion of RFX6 impairs iPSC-derived islet organoid development and survival, with no impact on PDX1+/NKX6.1+ progenitors

被引:3
作者
Aldous, Noura [1 ,2 ,3 ]
Elsayed, Ahmed K. [1 ,2 ,4 ]
Memon, Bushra [3 ]
Ijaz, Sadaf [5 ]
Hayat, Sikander [5 ]
Abdelalim, Essam M. [1 ,2 ,3 ]
机构
[1] Hamad Bin Khalifa Univ HBKU, Qatar Fdn, Coll Hlth & Life Sci, Educ City, Doha, Qatar
[2] Sidra Med, Translat Med Dept, Res Branch, Lab Pluripotent Stem Cell Dis Modeling, POB 26999, Doha, Qatar
[3] Hamad Bin Khalifa Univ HBKU, Qatar Fdn QF, Qatar Biomed Res Inst QBRI, Diabet Res Ctr, Doha, Qatar
[4] Hamad Bin Khalifa Univ HBKU, Qatar Fdn QF, Qatar Biomed Res Inst QBRI, Stem Cell Core, POB 34110, Doha, Qatar
[5] Rhein Westfal TH Aachen, Med Fac, Dept Med 2 Nephrol Rheumatol Clin Immunol & d Hype, Aachen, Germany
关键词
Diabetes; Endocrine specification; Islet organoids; Pancreatic hypoplasia; Pancreatic progenitors; Transcription factors; GENE-EXPRESSION; ANTIOXIDANT ENZYMES; PANCREAS; IDENTITY; CELLS; MAINTAINS; TOXICITY; ATRESIA; MICE;
D O I
10.1007/s00125-024-06232-2
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Aims/hypothesis Homozygous mutations in RFX6 lead to neonatal diabetes accompanied by a hypoplastic pancreas, whereas heterozygous mutations cause MODY. Recent studies have also shown RFX6 variants to be linked with type 2 diabetes. Despite RFX6's known function in islet development, its specific role in diabetes pathogenesis remains unclear. Here, we aimed to understand the mechanisms underlying the impairment of pancreatic islet development and subsequent hypoplasia due to loss-of-function mutations in RFX6. Methods We examined regulatory factor X6 (RFX6) expression during human embryonic stem cell (hESC) differentiation into pancreatic islets and re-analysed a single-cell RNA-seq dataset to identify RFX6-specific cell populations during islet development. Furthermore, induced pluripotent stem cell (iPSC) lines lacking RFX6 were generated using CRISPR/Cas9. Various approaches were then employed to explore the consequences of RFX6 loss across different developmental stages. Subsequently, we evaluated transcriptional changes resulting from RFX6 loss through RNA-seq of pancreatic progenitors (PPs) and endocrine progenitors (EPs). Results RFX6 expression was detected in PDX1(+) cells in the hESC-derived posterior foregut (PF). However, in the PPs, RFX6 did not co-localise with pancreatic and duodenal homeobox 1 (PDX1) or NK homeobox 1 (NKX6.1) but instead co-localised with neurogenin 3, NK2 homeobox 2 and islet hormones in the EPs and islets. Single-cell analysis revealed high RFX6 expression levels in endocrine clusters across various hESC-derived pancreatic differentiation stages. Upon differentiating iPSCs lacking RFX6 into pancreatic islets, a significant decrease in PDX1 expression at the PF stage was observed, although this did not affect PPs co-expressing PDX1 and NKX6.1. RNA-seq analysis showed the downregulation of essential genes involved in pancreatic endocrine differentiation, insulin secretion and ion transport due to RFX6 deficiency. Furthermore, RFX6 deficiency resulted in the formation of smaller islet organoids due to increased cellular apoptosis, linked to reduced catalase expression, implying a protective role for RFX6. Overexpression of RFX6 reversed defective phenotypes in RFX6-knockout PPs, EPs and islets. Conclusions/interpretation These findings suggest that pancreatic hypoplasia and reduced islet cell formation associated with RFX6 mutations are not due to alterations in PDX1(+)/NKX6.1(+) PPs but instead result from cellular apoptosis and downregulation of pancreatic endocrine genes. Data availability RNA-seq datasets have been deposited in the Zenodo repository with accession link (DOI: https://doi.org/10.5281/zenodo.10656891).
引用
收藏
页码:2786 / 2803
页数:18
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