TY - JOUR
T1 - STAG2 regulates interferon signaling in melanoma via enhancer loop reprogramming
AU - Chu, Zhaowei
AU - Gu, Lei
AU - Hu, Yeguang
AU - Zhang, Xiaoyang
AU - Li, Man
AU - Chen, Jiajia
AU - Teng, Da
AU - Huang, Man
AU - Shen, Che Hung
AU - Cai, Li
AU - Yoshida, Toshimi
AU - Qi, Yifeng
AU - Niu, Zhixin
AU - Feng, Austin
AU - Geng, Songmei
AU - Frederick, Dennie T.
AU - Specht, Emma
AU - Piris, Adriano
AU - Sullivan, Ryan J.
AU - Flaherty, Keith T.
AU - Boland, Genevieve M.
AU - Georgopoulos, Katia
AU - Liu, David
AU - Shi, Yang
AU - Zheng, Bin
N1 - Publisher Copyright:
© 2022, The Author(s).
PY - 2022/12
Y1 - 2022/12
N2 - The cohesin complex participates in the organization of 3D genome through generating and maintaining DNA loops. Stromal antigen 2 (STAG2), a core subunit of the cohesin complex, is frequently mutated in various cancers. However, the impact of STAG2 inactivation on 3D genome organization, especially the long-range enhancer-promoter contacts and subsequent gene expression control in cancer, remains poorly understood. Here we show that depletion of STAG2 in melanoma cells leads to expansion of topologically associating domains (TADs) and enhances the formation of acetylated histone H3 lysine 27 (H3K27ac)-associated DNA loops at sites where binding of STAG2 is switched to its paralog STAG1. We further identify Interferon Regulatory Factor 9 (IRF9) as a major direct target of STAG2 in melanoma cells via integrated RNA-seq, STAG2 ChIP-seq and H3K27ac HiChIP analyses. We demonstrate that loss of STAG2 activates IRF9 through modulating the 3D genome organization, which in turn enhances type I interferon signaling and increases the expression of PD-L1. Our findings not only establish a previously unknown role of the STAG2 to STAG1 switch in 3D genome organization, but also reveal a functional link between STAG2 and interferon signaling in cancer cells, which may enhance the immune evasion potential in STAG2-mutant cancer.
AB - The cohesin complex participates in the organization of 3D genome through generating and maintaining DNA loops. Stromal antigen 2 (STAG2), a core subunit of the cohesin complex, is frequently mutated in various cancers. However, the impact of STAG2 inactivation on 3D genome organization, especially the long-range enhancer-promoter contacts and subsequent gene expression control in cancer, remains poorly understood. Here we show that depletion of STAG2 in melanoma cells leads to expansion of topologically associating domains (TADs) and enhances the formation of acetylated histone H3 lysine 27 (H3K27ac)-associated DNA loops at sites where binding of STAG2 is switched to its paralog STAG1. We further identify Interferon Regulatory Factor 9 (IRF9) as a major direct target of STAG2 in melanoma cells via integrated RNA-seq, STAG2 ChIP-seq and H3K27ac HiChIP analyses. We demonstrate that loss of STAG2 activates IRF9 through modulating the 3D genome organization, which in turn enhances type I interferon signaling and increases the expression of PD-L1. Our findings not only establish a previously unknown role of the STAG2 to STAG1 switch in 3D genome organization, but also reveal a functional link between STAG2 and interferon signaling in cancer cells, which may enhance the immune evasion potential in STAG2-mutant cancer.
UR - https://www.scopus.com/pages/publications/85127726333
U2 - 10.1038/s41467-022-29541-9
DO - 10.1038/s41467-022-29541-9
M3 - 文章
C2 - 35388001
AN - SCOPUS:85127726333
SN - 2041-1723
VL - 13
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 1859
ER -