| Literature DB >> 27572304 |
Meijun Huo1, Haijun Han1, Zilong Sun1, Zhaojing Lu1, Xinglei Yao1, Shaolin Wang2, Jundong Wang1.
Abstract
We sequenced RNA transcripts from the testicles of healthy male mice, divided into a control group with distilled water and two experimental groups with 50 and 100 mg/l NaF in drinking water for 56 days. Bowtie/Tophat were used to align 50-bp paired-end reads into transcripts, Cufflinks to measure the relative abundance of each transcript and IPA to analyze RNA-Sequencing data. In the 100 mg/l NaF-treated group, four pathways related to IL-17, TGF-β and other cellular growth factor pathways were overexpressed. The mRNA expression of IL-17RA, IL-17RC, MAP2K1, MAP2K2, MAP2K3 and MAPKAPK2, monitored by qRT-PCR, increased remarkably in the 100 mg/L NaF group and coincided with the result of RNA-Sequencing. Fluoride exposure could disrupt spermatogenesis and testicles in male mice by influencing many signaling pathways and genes, which work on the immune signal transduction and cellular metabolism. The high expression of the IL-17 signal pathway was a response to the invasion of the testicular immune system due to extracellular fluoride. The PI3-kinase/AKT, MAPKs and the cytokines in TGF-β family were contributed to control the IL-17 pathway activation and maintain the immune privilege and spermatogenesis. All the findings provided new ideas for further molecular researches of fluorosis on the reproduction and immune response mechanism.Entities:
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Year: 2016 PMID: 27572304 PMCID: PMC5004130 DOI: 10.1038/srep32173
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Enriched biochemical pathways altered in the testicle in the 50 mg/l and 100 mg/l NaF-treated groups compared to the control groups.
Figure 2The common significant pathways between the 50 mg/l and 100 mg/l NaF-treated groups.
Figure 3The significant pathways related to toxicology altered in the 100 mg/l NaF-treated group.
Figure 4The percentage of different functional genes in all the 367 DEGs screened in the 50 mg/l and 100 mg/l NaF-treated groups.
It not only presented the relationship among genes and functions, diseases, but also describes the important role of genes on the development the reproductive system, nervous system, skeletal and muscular disorders, cell signaling and other metabolic processes.
Figure 5Detected interactions of enriched pathways in the testicle in the 50 mg/l and 100 mg/l NaF-treated groups.
All significant pathways identified by IPA software were highly interrelated. The number represented the count of the common genes between two pathways.
Important and representative genes altered in the fluorosis testicle based on the significant pathways of 100 mg/l NaF-treated group.
| # | Symbol | Matched Pathway | Entrez Gene Name | Ensembl | Fold Change | p-value | Location | Type(s) |
|---|---|---|---|---|---|---|---|---|
| 1 | MAP2K2(20) | Role of IL-17A in Arthritis | mitogen-activated protein kinase kinase 2 | ENSMUST00000105331 | 2.038 | 4.49E-02 | Cytoplasm | kinase |
| IL-17 Signaling | ||||||||
| Axonal Guidance Signaling | ||||||||
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| TGF-β Signaling | ||||||||
| ErbB4 Signaling | ||||||||
| CD40 Signaling | ||||||||
| Nicotinate and Nicotinamide Metabolism | ||||||||
| Glioblastoma Multiforme Signaling | ||||||||
| CXCR4 Signaling | ||||||||
| Role of NANOG in Mammalian Embryonic Stem Cell Pluripotency | ||||||||
| Cardiac Hypertrophy Signaling | ||||||||
| NRF2-mediated Oxidative Stress Response | ||||||||
| ErbB Signaling | ||||||||
| Ovarian Cancer Signaling | ||||||||
| Fc Epsilon RI Signaling | ||||||||
| Inositol Phosphate Metabolism | ||||||||
| Antiproliferative Role of Somatostatin Receptor 3 | ||||||||
| IL-17A Signaling | ||||||||
| Renin-Angiotensin Signaling | ||||||||
| 2 | PIK3R1(16) | Role of IL-17A in Arthritis | phosphoinositide-3-kinase, regulatory subunit 6 | ENSMUST00000060441 | 2.935 | 5.84E-03 | Cytoplasm | kinase |
| IL-17 Signaling | ||||||||
| Axonal Guidance Signaling | ||||||||
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| ErbB4 Signaling | ||||||||
| CD40 Signaling | ||||||||
| Glioblastoma Multiforme Signaling | ||||||||
| CXCR4 Signaling | ||||||||
| Role of NANOG in Mammalian Embryonic Stem Cell Pluripotency | ||||||||
| NRF2-mediated Oxidative Stress Response | ||||||||
| ErbB Signaling | ||||||||
| Fc Epsilon RI Signaling | ||||||||
| Inositol Phosphate Metabolism | ||||||||
| Antiproliferative Role of Somatostatin Receptor 4 | ||||||||
| IL-17A Signaling | ||||||||
| Renin-Angiotensin Signaling | ||||||||
| 3 | MAP2K3(11) | Role of IL-17A in Arthritis | mitogen-activated protein kinase kinase 3 | ENSMUST00000019076 | 1.658 | 4.12E-02 | Cytoplasm | kinase |
| IL-17 Signaling | ||||||||
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| TGF-β Signaling | ||||||||
| CD40 Signaling | ||||||||
| Nicotinate and Nicotinamide Metabolism | ||||||||
| Role of PKR in Interferon Induction and Antiviral Response | ||||||||
| NRF2-mediated Oxidative Stress Response | ||||||||
| ErbB Signaling | ||||||||
| Fc Epsilon RI Signaling | ||||||||
| Inositol Phosphate Metabolism | ||||||||
| 4 | WNT6(5) | Axonal Guidance Signaling | wingless-type MMTV integration site family, member 6 | ENSMUST00000006716 | 2.945 | 4.93E-04 | Extracellular Space | other |
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| Glioblastoma Multiforme Signaling | ||||||||
| Role of NANOG in Mammalian Embryonic Stem Cell Pluripotency | ||||||||
| Human Embryonic Stem Cell Pluripotency | ||||||||
| 5 | WNT9A(4) | Axonal Guidance Signaling | — | ENSMUST00000108783 | 2.205 | 3.52E-02 | Other | other |
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| Glioblastoma Multiforme Signaling | ||||||||
| Role of NANOG in Mammalian Embryonic Stem Cell Pluripotency | ||||||||
| 6 | WNT10A(4) | Axonal Guidance Signaling | wingless-type MMTV integration site family, member 10A | ENSMUST00000006718 | 1.973 | 2.21E-02 | Extracellular Space | other |
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| Glioblastoma Multiforme Signaling | ||||||||
| Role of NANOG in Mammalian Embryonic Stem Cell Pluripotency | ||||||||
| 7 | GNA11(4) | Axonal Guidance Signaling | guanine nucleotide binding protein (G protein), alpha 11 (Gq class) | ENSMUST00000043604 | 2.433 | 9.84E-03 | Plasma Membrane | enzyme |
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| CXCR4 Signaling | ||||||||
| Inositol Phosphate Metabolism | ||||||||
| 8 | MAPKAPK2 (4) | Role of IL-17A in Arthritis | mitogen-activated protein kinase-activated protein kinase 2 | ENSMUST00000016672 | 1.991 | 7.62E-03 | Nucleus | kinase |
| IL-17 Signaling | ||||||||
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| CD40 Signaling | ||||||||
| 9 | IL17RC(4) | Role of IL-17A in Arthritis | interleukin 17 receptor C | ENSMUST00000113062 | 3.053 | 1.21E-03 | Plasma Membrane | transmembrane receptor |
| IL-17 Signaling | ||||||||
| Role of Macrophages, Fibroblasts and Endothelial Cells in Rheumatoid Arthritis | ||||||||
| IL-17A Signaling |
Figure 6The map of the intracellular metabolic processes for IL-17 signaling pathway.
The genes marked with red color indicated their value of genetic expression were significantly changed in the 100 mg/l NaF group. MAP2K3/MAP2K6marked by MKK3/6, MAP2K1/MAP2K2 marked by MKK1/2, and PIK3R1 marked by PI3K.
Figure 7Results of the nine mRNA expression related to the IL-17 signaling pathway in testis of mice in each treatment group.
Compared with the control group, *P < 0.05, **P < 0.01, ***P < 0.001, n = 5.