| Literature DB >> 32943603 |
Lewins Walter1, Brandon Canup2, Adani Pujada1, Tien Anh Bui3, Behafarin Arbasi1, Hamed Laroui2, Didier Merlin1, Pallavi Garg4.
Abstract
Entities:
Year: 2020 PMID: 32943603 PMCID: PMC7498454 DOI: 10.1038/s41419-020-02959-z
Source DB: PubMed Journal: Cell Death Dis Impact factor: 8.469
Fig. 1TgM9 mice exhibited reduced ROS levels and DNA damage in CAC.
a Bar graph representation (two individual experiments) of the quantification of ROS levels in the whole colon of TgM9 and WT littermates’ mice (n = 10) with and without CAC. Each bar represents mean ± S.E., ***p < 0.0005 and NS is non-significant. b Immunofluorescence staining of the colonic Swiss rolls of TgM9 and WT littermates’ mice in CAC (n = 6) probed with (i) SOD1 (green fluorescence of FITC) and (ii) 8OHdG (green fluorescence of FITC). ×20 magnification was used for the images. DAPI and TRITC conjugated phalloidin were used to counterstain nuclei with blue fluorescence and actin with red fluorescence respectively. Red arrows show SOD1 and 8OHdG expressions in the colon of WT littermates’ mice. Scale bars: 50 mm. c Immunofluorescence staining of the colonic Swiss rolls of TgM9 and WT littermates’ mice in CAC (n = 6) probed with γH2AX (green fluorescence of FITC) as indicated by red arrows. ×20 magnification was used for the images. DAPI and TRITC conjugated phalloidin were used to counterstain nuclei with blue fluorescence and actin with red fluorescence respectively. Scale bars: 50 mm. d WB of the whole-cell lysates (25 μg/lane) extracted from mucosal stripping of TgM9 and WT littermates’ mice with and without CAC was performed and probed with anti-γH2AX. The loading control for the blot was GAPDH.
Fig. 2MMP9 expression is associated with the activation of mismatch repair (MMR) proteins in CAC.
a WBs of the whole-cell lysates (25 μg/lane) extracted from mucosal stripping of TgM9 and WT littermates’ mice (n = 6 per group) with and without CAC were performed and probed with (i) anti-MSH2, (ii) anti-MLH1, and (iii) anti-PCNA. b WBs of the whole-cell lysates (25 μg/lane) of HCT116 cells with and without MMP9 expression were probed with (i) anti- γH2AX, (ii) anti-MDC1, iii) anti-MLH1, and (iv) anti-MSH2. GAPDH was used as the loading control for the blots.
Fig. 3Silencing of MMP9 by MMP9 siRNA loaded nanoparticles worsened CAC conditions in mice.
a (i) Immunofluorescence staining of nanoparticles loaded with FITC fluorescein dye as a probe after 12 and 24 h of delivery is shown by red arrows. DAPI was used to counterstain nuclei with blue fluorescence. Scale bars: 50 mm. Images were taken with ×20 magnification, and (ii) WB of the whole-cell lysates (25 μg/lane) extracted from mucosal stripping of WT mice (n = 5 per group, two individual experiments) with and without CAC gavaged with either MMP9 siRNA or scrambled siRNA loaded nanoparticles probed with anti-MMP9. GAPDH was used as the loading control for the blots. Bar graph presentation of the b body weight gain (in percent), c number of dysplastic lesions in the whole colon assessed under microscope, and d number of polyps in the whole colon assessed under microscope among WT mice (n = 5 per group) with and without CAC gavaged with either MMP9 siRNA or scrambled siRNA loaded nanoparticles. Each bar represents mean ± S.E., **p < 0.005 and *p < 0.05. e H&E staining of the colonic Swiss rolls of WT mice (n = 4 per group) with and without CAC gavaged with either MMP9 siRNA or scrambled siRNA loaded nanoparticles. Images were taken with ×10 and ×20 magnifications. Black arrows indicate flat polyp and blue arrows indicate dysplasia in epithelium respectively. Scale bars: 50 mm. f Bar graph presentation of the histological score calculated on three parameters- infiltration of neutrophils, loss of crypt architecture, and foci of ulceration. Each bar represents mean ± S.E., *p < 0.05.
Fig. 4Silencing of MMP9 by nanoparticles alters the microbiota and ROS levels in CAC.
a Bar graph presentation of the QPCR analyses of different phyla of microbiota at mRNA levels in colonic mucosal stripping from WT mice (n = 5 per group) with and without CAC gavaged with either MMP9 siRNA or scrambled siRNA loaded nanoparticles. Relative mRNA expression levels of (i) universal bacteria, 16SrRNA (ii) Bacteroidetes (iii) A. muciniphila (iv) E. faecalis. NS means non-significant. Each bar represents mean ± S.E., *p < 0.05. b Immunofluorescence staining of the colonic Swiss rolls of WT mice (n = 5 per group) gavaged with either MMP9 siRNA or scrambled siRNA loaded nanoparticles in CAC probed with (i) SOD1 (green fluorescence of FITC) and (ii) 8OHdG (green fluorescence of FITC). ×20 magnification was used for the images. DAPI and TRITC conjugated phalloidin were used to counterstain nuclei with blue fluorescence and actin with red fluorescence respectively. Red arrows show the increased staining of SOD1 and 8OHdG in the colon of WT mice gavaged with MMP9 siRNA loaded nanoparticles in CAC. Scale bars: 50 mm. c WBs of the whole-cell lysates (25 μg/lane) extracted from mucosal stripping of WT mice (n = 5 per group) with and without CAC gavaged with either MMP9 siRNA or scrambled siRNA loaded nanoparticles were performed and probed with (i) anti- γH2AX, (ii) anti-MLH1, and (iii) anti-MSH2. β-actin was used as the loading control for the blots.
Fig. 5MMP9 expression promotes epithelial cells differentiation and proliferation.
a Crypts isolated from the colons of TgM9 and their WT littermates’ mice were grown to form colonoids on Matrigel in 24 well plates. Colonoid formation was observed and images were captured on (i) day 2, (ii) day 4, (iii) day 7 at ×20 magnification, and (iv) day 9 at ×10 magnification. Scale bars: 50 mm. b WBs of the whole-cell lysates of the colonoids from TgM9 and their WT littermates’ mice (10 μg/lane for day 4 and 20 μg/lane for days 7 & 9) were probed with (i) anti- CA1, (ii) anti-SEPP1, and iii) anti-PCNA. GAPDH was used as the loading control for the blots. Each blot is a representation of three individual experiments. c Immunofluorescence staining of four days old colonoids of TgM9 and their WT liitermates’ mice, grown on Matrigel in chambered slides (n = 4 wells per group) probed with (i) PCNA (green fluorescence of FITC) and (ii) SEPP1 (green fluorescence of FITC). ×40 magnification was used for the images. DAPI and TRITC conjugated phalloidin were used to counterstain nuclei with blue fluorescence and actin with red fluorescence respectively. Images are the Z-sections with ×40 magnification. DAPI was used to counterstain nuclei with blue fluorescence and red fluorescence is for actin-phalloidin. Scale bars: 50 mm.
Fig. 6Schematic presentation of MMP9 mediated inhibition of reactive oxygen species (ROS) accumulation.
In CAC, chronic inflammation generates ROS as well as activates MMP9. Active MMP9 is secreted out in extracellular space. MMP9 upregulates p53 expression via activation of transmembrane protein Notch1[11]. Activation of p53 stimulates DNA damage response (DDR) to prevent ROS mediated DNA damage. DDR causes activation of mismatch repair (MMR) proteins to repair damaged DNA. This prevents the dysplasia progression and allows the proliferation of healthy epithelium. Preservation of healthy epithelium ensures the microbiota homeostasis and regulates ROS production. These events act as a positive feedback loop triggered by MMP9 causing the CAC suppression. Silencing of MMP9 accelerates CAC progression due to an auto feedback loop set up by the loss of microbiota and increase in ROS accumulation. This results in epithelial cell dysplasia in CAC.