Generation of B7H3 isoform regulated by ANXA2/NSUN2/YBX1 axis in human glioma

Author:

Shen Yifen1,Ma Chunfang2,Li Xiangxiang2,Li Xiaosong3,Wu Yuxiang4,Yang Tao5,Hu Yanping6,Liu Chao1ORCID,Shen Hao2,Guo Pin7,Shen Yihang1ORCID

Affiliation:

1. Central Laboratory, Suzhou Bay Clinical College Xuzhou Medical University, Suzhou Ninth People's Hospital Suzhou Jiangsu China

2. Clinical Laboratory Suzhou Ninth People's Hospital Suzhou Jiangsu China

3. Department of Anorectal Surgery Suzhou Ninth People's Hospital Suzhou Jiangsu China

4. Department of Pathology Suzhou Ninth People's Hospital Suzhou Jiangsu China

5. Department of Medical Cosmetology, Suzhou Ninth People's Hospital Soochow University Suzhou Jiangsu China

6. Department of Molecular Pathology The Affiliated Cancer Hospital of Zhengzhou University, Henan Cancer Hospital Zhengzhou Henan China

7. Department of Neurosurgery The Affiliated Hospital of Qingdao University Qingdao Shandong China

Abstract

AbstractIn recent years, in the development of emerging immunotherapy, B7‐H3 is also termed as CD276 and has become a novel chimeric antigen receptor (CAR)‐T target against glioma and other tumours, and aroused extensive attention. However, B7‐H3 has three isoforms (2, 3 and 4Ig) with the controversial expression and elusive function in tumour especially glioma. The current study mainly focuses on the regulatory factors and related mechanisms of generation of different B7‐H3 isoforms. First, we have determined that 2Ig is dominant in glioma with high malignancy, and 4Ig is widely expressed, whereas 3Ig shows negative expression in all glioma. Next, we have further found that RNA binding protein annexin A2 (ANXA2) is essential for B7‐H3 isoform maintenance, but fail to determine the choice of 4Ig or 2Ig. RNA methyltransferase NOP2/Sun RNA methyltransferase 2 (NSUN2) and 5‐methylcytosine reader Y‐box binding protein 1 (YBX1) facilitate the production of 2Ig. Our findings have uncovered a series of factors (ANXA2/NSUN2/YBX1) that can determine the alternative generation of different isoforms of B7‐H3 in glioma. Our result aims to help peers gain a clearer understanding of the expression and regulatory mechanisms of B7H3 in tumour patients, and to provide better strategies for designing B7H3 as a target in immunotherapy.

Publisher

Wiley

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