| Literature DB >> 28099942 |
Nathalie Allaman-Pillet1, Anne Oberson1, Daniel F Schorderet1.
Abstract
BIGH3, a secreted protein of the extracellular matrix interacts with collagen and integrins on the cell surface. BIGH3 can have opposing functions in cancer, acting either as tumor suppressor or promoter by enhancing tumor progression and angiogenesis. In the eye, BIGH3 is expressed in the cornea and the retinal pigment epithelium and could impact on the development of retinoblastoma, the most common paediatric intraocular neoplasm. Retinoblastoma initiation requires the inactivation of both alleles of the RB1 tumor suppressor gene in the developing retina and tumor progression involves additional genomic changes. To determine whether BIGH3 affects retinoblastoma development, we generated a retinoblastoma mouse model with disruption of the Bigh3 genomic locus. Bigh3 silencing in these mice resulted in enhanced tumor development in the retina. A decrease in apoptosis is involved in the initial events of tumorigenesis, followed by an increased activity of the pro-survival ERK pathway as well as an upregulation of cyclin-dependent kinases (CDKs). Taken together, these data suggest that BIGH3 acts as a tumor suppressor in the retina.Entities:
Keywords: BIGH3; SV40-TAg-Rb mice; cancer; retinoblastoma
Mesh:
Substances:
Year: 2017 PMID: 28099942 PMCID: PMC5362501 DOI: 10.18632/oncotarget.14659
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Cosmic BIGH3 gene analysis
| Tissue | Point mutations | |
|---|---|---|
| % Mutated | Total number of sample tested | |
| Breast | 0.67 | 2103 |
| Endometrium | 2.19 | 640 |
| Large intestine | 2.09 | 1432 |
| Liver | 0.61 | 1807 |
| Lung | 0.54 | 1835 |
| Pancreas | 0.52 | 1736 |
| Prostate | 0.59 | 1357 |
| Skin | 2.19 | 1189 |
| Stomach | 1.62 | 740 |
Point mutations in BIGH3 gene present in human cancer
Figure 1Bigh3 silencing in RPE of mice retina
A. PCR approach used to distinguish between Bigh3 WT, Bigh3+/−, and Bigh3−/− alleles. The figure shows both Bigh3 WT and deleted alleles with the red bar indicating the deleted region encompassing exon 1. Exon 1 and 2, primers position and amplicons are indicated. PCR product for Bigh3 WT (1), Bigh3 -/+ (2), and Bigh3 −/− (3) alleles are shown using both primer pairs. M indicated the 1kb ladder, - negative control. B. PCR used to detect the SV40-TAg transgene in SV40-TAg (1) and wild type (2) mice. M indicated the 1kb ladder, - negative control. C. BIGH3 is detected by immunofluorescence analysis in the retina of SV40-TAg mice at different ages (post-natal day 2, 6 and 15) at the level of RPE, while it is absent from SV40-TAg-Bigh3−/− mice. IH was performed on retina obtained from three different mice at each time point. RBL, retinoblast layer; INL, inner nuclear layer; ONL, outer nuclear layer.
Figure 2Bigh3 KO impacted Rb mice viability and tumor incidence and development
A. Survival curve of SV40-TAg mice developing Rb compared with SV40-TAg/Bigh3−/−. B. The number of eyes with large Rb visible in the vitreous were counted in SV40-TAg and SV40-TAg/Bigh3−/− mice of 3 and 4 months of age. n= 6 and 56 for SV40-TAg of 3 and 4 months of age respectively and n= 46 and 59 for SV40-TAg/Bigh3−/− of 3 and 4 months of age. *p<0.05. C. Estimation of the Rb tumor size in SV40-TAg and SV40-TAg/Bigh3−/− mice of 2 and 3 months of age. n= 5 for each age and phenotype. *p<0.05. D. CDK1, PRC1 and TOP2A expression was determined in WT healthy mice (WT) as well as in SV40-TAg and Bigh3-null SV40-TAg mice by immunohistochemistry in the retina at P60 and P90 (red staining). Nuclear DNA was revealed with DAPI (blue). n=3 for each age and phenotype. The vertical white bar indicated the INL, inner nuclear layer. The horizontal white line is the scale bar (50 uM). E. Expression of Cdk, Prc1 and Top2a at mRNA level was determined by quantitative RT-PCR in the retina of WT, SV40-TAg and SV40-TAg/Bigh3−/− mice of 1 month of age. Data are the mean ±SEM of three measurements performed on four different retinas for each age and phenotype. *p < 0.001. F. Expression of Ki67 in the retina of 1-month-old WT healthy mice (WT) and in SV40-TAg and SV40-TAg/Bigh3−/− mice. n= 4 for each phenotype. INL, inner nuclear layer; ONL, outer nuclear layer. The horizontal white line is the scale bar (50 uM).
Figure 3Apoptosis was decreased in the INL of SV40-TAg/Bigh3 KO mice at P15
A. TUNEL assay and counting of TUNEL-positive apoptotic cells in the INL showed that apoptotic events were decreased in SV40-TAg/Bigh3 KO retina. Data are the mean +/− SEM of three independent experiments. ONL, outer nuclear layer; INL, inner nuclear layer. The horizontal white line is the scale bar (50 uM). *p<0.014. B. INL thickness was measured in SV40-TAg and SV40-TAg/Bigh3 KO retina at day 15 and 30 after birth (P15, P30). Data are the mean ±SEM of three measurements performed on three different retinas. *p < 0.004. C and D. ERK activity was investigated by Western blotting and immunohistochemistry, respectively in the retina of SV40-TAg and SV40-TAg/Bigh3 KO mice using an anti-P-ERK antibody. In Western blotting, ERK activity was normalized against ERK. Data are the mean ±SEM of three independent experiments. The horizontal white line is the scale bar (50 uM). *p<0.005.
Figure 4BCL-2 family members content in the retina of SV40-TAg and SV40-TAg/Bigh3 KO mice
The content of BCL-2 protein family members was determined at early stage (P0, P15, P30) of Rb development in the retina of SV40-TAg and SV40-TAg/Bigh3 KO mice at mRNA and protein level by quantitative RT-PCR A. and Western blotting B. respectively. Data are the mean ±SEM of three quantitative RT-PCR performed on three different retinas (*p< 0.05), and of Western blot carried out on 4 different retinas for each age and phenotype.
Figure 5CCND1 expression in Bigh3-null SV40-TAg mice
Ccnd1 expression was determined at early stage of Rb development at RNA and protein level by quantitative RT-PCR A., Western analysis B. and immunohistochemistry C. in the retina of WT, SV40-TAg and SV40-TAg/Bigh3−/− mice at birth (P0) and at P10, P15 and P30. *p<0.001 in A. Ccnd1 expression was also studied later in large Rb tumor of SV40-TAg and SV40-TAg/Bigh3−/− mice of 4-5 months of age at RNA D. and protein E. level. n=3 for each age and phenotype. The white line indicated the INL, inner nuclear layer. The horizontal white line is the scale bar (50 μM). *p<0.04 in D.
Figure 6The expression of various Cdks was upregulated in Bigh3-null SV40-TAg mice
mRNA levels for cell cycle regulatory cyclin-dependent kinases (Cdk1, 2, 4, and 6) and cyclins (Ccna/b, and e) genes were determined by quantitative RT-PCR in P15 and P30 SV40-TAg and SV40-TAg/Bigh3−/− mice retina. Data are the mean ±SEM of three independent experiments performed with the retinal RNA from three different mice. *p<0.006.
Primers sequence
| Bigh3-1F | 5’-GGATTCCTGAATGCCAAGGTG-3’ |
| Bigh3-1R | 5’-AGAGCGAGGGTCAGCAGTC-3’ |
| Bigh3-3R | 5’-GGGGTACCCGGACCTTAGCTGAGCC-3’ |
| SV40-F | 5’-GGAAAGTCCTTGGGGTCTTC-3’ |
| SV40-R | 5’-CACTTGTGTGGGTTGATTGC-3’ |
| Ccnd1 forward | 5’-GTTGTGCATCTACACTGACA-3’ |
| Ccnd1 reverse | 5’-ACAGAGGGCCACAAAGGTC-3’ |
| Cdk1 forward | 5’-CCAGGCTCTATCTCATCTTTG-3’ |
| Cdk1 reverse | 5’-ATCAGCCAGTTTGATTGTTCC-3’ |
| Cdk2 forward | 5’-AGCTCTCCTTGCGTTCCATC-3’ |
| Cdk2 reverse | 5’-TCGGATGGCAGTACTGGGTA-3’ |
| Cdk4 forward | 5’-TGGATTGCCTCCAGAAGACG-3’ |
| Cdk4 reverse | 5’-CTTCAGCGAGGGTTTCTCCA-3’ |
| Cdk6 forward | 5’-GCATCGTGATCTGAAACCGC-3’ |
| Cdk6 reverse | 5’-CCACGTCTGAACTTCCACGA-3’ |
| Ccna2 forward | 5’-CTGTGCACGCTCTGCCG -3’ |
| Ccna2 reverse | 5’-CCATGAAGGACCAGCAGTGA -3’ |
| Ccnb1 forward | 5’-GCCTGAACCTGAACTTGAAC-3’ |
| Ccnb1 reverse | 5’-TCCAGTTGTCGGAGATAAGC-3’ |
| Ccnb2 forward | 5’-CTACGTGAAGGACATCTACCA-3’ |
| Ccnb2 reverse | 5’-GTCCATGATGGCAATGCACA-3’ |
| Ccnd1 forward | 5’-GGTCTGTGAGGAGCAGAAGT-3’ |
| Ccnd1 reverse | 5’-GGCCGGATAGAGTTGTCAGT-3’ |
| Ccne1 forward | 5’-CACAGCTTCGGGTCTGAGTT-3’ |
| Ccne1 reverse | 5’-GCTGACTGCTATCCTCGCTT-3’ |
| Cdk1-F | 5’-CCAGGCTCTATCTCATCTTTG-3’ |
| Cdk1-R | 5’-ATCAGCCAGTTTGATTGTTCC-3’ |
| Prc1-F | 5’-ATCCATCTGTCAGAAGGAGC-3’ |
| Prc1-R | 5’-TCCTGAAGTAGCTTCAATTCC-3’ |
| Ezh2-F | 5’-CAGCACAAGTCATCCCGTTA-3’ |
| Ezh2-R | 5’-CATTCTCTGTCACCATGCAC-3’ |
| Bax-F | 5’-CCACCAGCTCTGAACAGA-3’ |
| Bax-R | 5’-TGTCCACGTCAGCAATCATCCT-3’ |
| Bim-F | 5’-GTCTCAGGAGGAACCTGAAGAT-3’ |
| Bim-R | 5’-CAATGCCTTCTCCATACCAGAC-3’ |
| Bcl2-F | 5’-GAACTGGGGGAGGATTGTGG-3’ |
| Bcl2-R | 5’-GCATGCTGGGGCCATATAGT-3’ |
| Bcl-Xl-F | 5’-TGATTCCCATGGCAGCAGTG-3’ |
| Bcl-Xl-R | 5’-CAGTTTACTCCATCCCGAAAG-3’ |
| Itgb5-F | 5’-CTCCAGGGCCCGTTATGAAA-3’ |
| Itgb5-R | 5’-CTACCAGGTCCCTTAGGGCT-3’ |
| Itgav-F | 5’-CAGGGACTGAAGTCTTTCGGC-3’ |
| Itgav-R | 5’-CTCCCACCAGGAGAAACATCCT-3’ |