BRCA1 Insufficiency Induces a Hypersialylated Acidic Tumor Microenvironment That Promotes Metastasis and Immunotherapy Resistance

Author:

Shu Xiaodong12ORCID,Li Jianjie12ORCID,Chan Un In12ORCID,Su Sek Man12ORCID,Shi Changxiang12ORCID,Zhang Xin12ORCID,An Tingting12ORCID,Xu Jun12ORCID,Mo Lihua12ORCID,Liu Jianlin12ORCID,Wang Yuqing12ORCID,Li Xiaoling12ORCID,Deng Min12ORCID,Lei Josh Haipeng12ORCID,Wang Chunfei12ORCID,Tian Hao12ORCID,Heng Sun12ORCID,Shim Joong Sup12ORCID,Zhang Xuanjun12ORCID,Dai Yunlu12ORCID,Yao Zhicheng3ORCID,Kuang Xiaying4ORCID,Lin Ying4ORCID,Deng Chu-Xia12ORCID,Xu Xiaoling125ORCID

Affiliation:

1. 1Cancer Centre, Faculty of Health Sciences, University of Macau, Taipa, Macau SAR, China.

2. 2Ministry of Education Frontiers Science Center for Precision Oncology, University of Macau, Taipa, Macau SAR, China.

3. 3Department of General Surgery, Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China.

4. 4Breast Disease Center, First Affiliated Hospital of Sun Yat-sen University, Yuexiu District, Guangzhou, Guangdong, China.

5. 5ZUMRI-Yunsheng Precision Medical Technology Joint Laboratory, Zhuhai UM Science & Technology Research Institute (ZUMRI), Hengqin, Zhuhai, China.

Abstract

Abstract Cancer metastasis is an extremely complex process affected by many factors. An acidic microenvironment can drive cancer cell migration toward blood vessels while also hampering immune cell activity. Here, we identified a mechanism mediated by sialyltransferases that induces an acidic tumor-permissive microenvironment (ATPME) in BRCA1-mutant and most BRCA1-low breast cancers. Hypersialylation mediated by ST8SIA4 perturbed the mammary epithelial bilayer structure and generated an ATPME and immunosuppressive microenvironment with increased PD-L1 and PD1 expressions. Mechanistically, BRCA1 deficiency increased expression of VEGFA and IL6 to activate TGFβ–ST8SIA4 signaling. High levels of ST8SIA4 led to accumulation of polysialic acid (PSA) on mammary epithelial membranes that facilitated escape of cancer cells from immunosurveillance, promoting metastasis and resistance to αPD1 treatment. The sialyltransferase inhibitor 3Fax-Peracetyl Neu5Ac neutralized the ATPME, sensitized cancers to immune checkpoint blockade by activating CD8 T cells, and inhibited tumor growth and metastasis. Together, these findings identify a potential therapeutic option for cancers with a high level of PSA. Significance: BRCA1 deficiency generates an acidic microenvironment to promote cancer metastasis and immunotherapy resistance that can be reversed using a sialyltransferase inhibitor.

Funder

Fundo para o Desenvolvimento das Ciências e da Tecnologia

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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