| Literature DB >> 36008957 |
Wenchao Yao1,2, Dankun Luo1,2, Zhenyi Lv1,2, Yang Yang1,2, Liyi Wang1,2, Biao Ma1,2, Dongbo Xue1,2, Chenjun Hao1,2, Yingmei Zhang2.
Abstract
BACKGROUND: The pathogenesis of chronic pancreatitis is still unclear. Trypsinogen activation is an active factor in acute pancreatitis that has not been studied in the occurrence of chronic pancreatitis.Entities:
Keywords: Rabep1; chronic pancreatitis; endocytosis pathway; pancreatic stellate cells activation; trypsinogen activation
Mesh:
Substances:
Year: 2022 PMID: 36008957 PMCID: PMC9406084 DOI: 10.3390/biom12081063
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Sequence of siRNA-Rabep1 designed by Generalbiol Co.
| PIN | Primer Name | Sequence (5′ to 3′) | Length | MW (g/mol) | Tm °C | GC % | Purification |
|---|---|---|---|---|---|---|---|
| A2276696 | Rabep1 (Norway rat) siRNA-1962 | CAGAAGAGCUGGUGAGGUUTT | 21 | 6789.21 | 52.4 | 47.6 | HPLC |
| A2276697 | AACCUCACCAGCUCUUCUGTT | 21 | 6525.99 | 52.4 | 47.6 | HPLC |
Figure 1Endocytosis of trypsinogen in PSC occurred in CP. Immunofluorescence microscope was used to detect the expression and location of trypsinogen and pancreatic stellate cells (PSC) in the control group and chronic pancreatitis (CP) tissues. Blue indicates DAPI, red indicates trypsinogen, and green indicates PSC. Scale bars = 9 μm. ** p < 0.01, **** p < 0.0001.
Figure 2Rabep1 is highly expressed in CP and is related to the endocytosis pathway: (A) according to the Microarray data, Rabep1 showed higher expression level in CP group (B1−B3, treated with TLC) compared with control group (A1−A3). (B) Analysis of Rabep1 co-expressed genes through genemania database. (C) GO enrichment analysis found that Rabep1 is closely related to the recycling endosome. (D) KEGG enrichment analysis showed that Rabep1 was significantly enriched in Endocytosis pathway.
Figure 3The endocytosis pathway is verified in PSCs with scRNA-seq. (A,B) UMAP plots of all 19848 pancreatic cells classified by Seurat clusters (A) and cell types (B). (C) Heatmap of significant marker gene expressions in all clusters. (D) Heatmap of significant marker gene expressions in PSCs, including clusters 22, 26, and 27. (E) The percentages of subsets of cells in each sample. (F) KEGG enrichment analysis showed that Endocytosis was in top20 pathways.
Figure 4Rabep1 regulates the endocytosis of trypsinogen in PSCs. (A,B) Western blot analysis found that trypsinogen was highly expressed in TLC-treated PSC cells and that silencing Rabep1 inhibited it. (C,D) Trypsinogen expression was assessed by immunofluorescence in PSC treated with TLC or (and) silencing. Rabep1, Blue indicates DAPI, red indicates trypsinogen. Scale bars = 9 μm. * p < 0.05, ** p < 0.01, **** p < 0.0001.
Figure 5Trypsinogen is activated through the endocytosis pathway in PSC. (A) Trypsinogen expression level was assessed by immunofluorescence in PSC treated with TLC or trypsinogen or nafamostate or bafilomycin-A1. Blue indicates DAPI, red indicates trypsinogen. Scale bars = 9 μm. (B) Trypsinogen activation level was assessed by immunofluorescence in PSC treated with TLC or trypsinogen or nafamostate or bafilomycin-A1. Blue indicates DAPI, green indicates active trypsinogen. Scale bars = 9 μm. (C) Trypsinogen activation level was verified by flow cytometry experiment. *** p < 0.001.
Figure 6Activated trypsinogen provides another way to activate PSC. (A) α-SMA expression level, used to assess the activation degree of PSC, was assessed by immunofluorescence in PSC treated with TLC or trypsinogen or nafamostate or bafilomycin-A1. Blue indicates DAPI, green indicates active PSC. Scale bars = 9 μm. (B) α-SMA expression level was verified by flow cytometry experiment. *** p < 0.001.