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Liver sinusoidal endothelial cells contribute to portal hypertension through collagen type IV–driven sinusoidal remodeling
Can Gan, Usman Yaqoob, Jianwen Lu, Man Xie, Abid Anwar, Nidhi Jalan-Sakrikar, Sofia Jerez, Tejasav S. Sehrawat, Amaia Navarro-Corcuera, Enis Kostallari, Nawras W. Habash, Sheng Cao, Vijay H. Shah
Can Gan, Usman Yaqoob, Jianwen Lu, Man Xie, Abid Anwar, Nidhi Jalan-Sakrikar, Sofia Jerez, Tejasav S. Sehrawat, Amaia Navarro-Corcuera, Enis Kostallari, Nawras W. Habash, Sheng Cao, Vijay H. Shah
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Research Article Cell biology Hepatology

Liver sinusoidal endothelial cells contribute to portal hypertension through collagen type IV–driven sinusoidal remodeling

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Abstract

Portal hypertension (PHTN) is a severe complication of liver cirrhosis and is associated with intrahepatic sinusoidal remodeling induced by sinusoidal resistance and angiogenesis. Collagen type IV (COL4), a major component of basement membrane, forms in liver sinusoids upon chronic liver injury. However, the role, cellular source, and expression regulation of COL4 in liver diseases are unknown. Here, we examined how COL4 is produced and how it regulates sinusoidal remodeling in fibrosis and PHTN. Human cirrhotic liver sample RNA sequencing showed increased COL4 expression, which was further verified via immunofluorescence staining. Single-cell RNA sequencing identified liver sinusoidal endothelial cells (LSECs) as the predominant source of COL4 upregulation in mouse fibrotic liver. In addition, COL4 was upregulated in a TNF-α/NF-κB–dependent manner through an epigenetic mechanism in LSECs in vitro. Indeed, by utilizing a CRISPRi-dCas9-KRAB epigenome-editing approach, epigenetic repression of the enhancer-promoter interaction showed silencing of COL4 gene expression. LSEC-specific COL4 gene mutation or repression in vivo abrogated sinusoidal resistance and angiogenesis, which thereby alleviated sinusoidal remodeling and PHTN. Our findings reveal that LSECs promote sinusoidal remodeling and PHTN during liver fibrosis through COL4 deposition.

Authors

Can Gan, Usman Yaqoob, Jianwen Lu, Man Xie, Abid Anwar, Nidhi Jalan-Sakrikar, Sofia Jerez, Tejasav S. Sehrawat, Amaia Navarro-Corcuera, Enis Kostallari, Nawras W. Habash, Sheng Cao, Vijay H. Shah

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Figure 1

COL4 is increased in human and mouse fibrotic livers.

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COL4 is increased in human and mouse fibrotic livers.
(A) Differential g...
(A) Differential gene expression analysis showed a wide array of collagen genes with increased expression (log2 fold-change [Log2FC] > 2) in alcohol-induced human cirrhotic livers. Red box highlights COL4 genes. (B) Expression level of upregulated collagen genes in healthy and cirrhotic human livers was quantified via Integrative Genomics Viewer. Other than COL1A1, both COL4A1 and COL4A2 (white arrows) showed the highest reads per kilobase per million mapped reads (RPKM) in cirrhotic livers. (C and D) Representative immunofluorescence (IF) images showed COL4 staining (green) and LYVE1 staining (red) in human (C) and mouse (D) livers. Beside each image is the colocalization analysis for each of the merged images. The graph peaks represent the average fluorescence intensities of the staining at the given distances (in nanometers) along the 4 straight white arrows in each sinusoid. The white arrows in the merged images represent the areas selected for colocalization. Each graph has number of intensity peaks for each fluorophore (green and red). The ratio of intensity peaks of COL4 versus LYVE1 is shown on the top of each graph. A total of 3 complete sinusoids have been quantified for colocalization analysis (n = 3/group). IF images showed close approximation of COL4 with Lyve1 in both human and mouse normal and cirrhotic liver. DAPI (blue) was used to stain nuclei. COL4 expression was upregulated in liver sinusoids from alcohol-induced human cirrhotic livers (C) and from CCl4-induced mouse fibrotic livers (D). Scale bars: 10 μm. Graphs represent mean ± SEM. P < 0.05 is for the comparison of panel C IF intensity from healthy to cirrhotic. P < 0.01 is for the comparison of panel D IF intensity from olive oil to CCL4.

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