Inhibition of human adenovirus replication by TRIM35-mediated degradation of E1A

Author:

Sun Nan123,Zhang Jikai1,Zhang Chen1,Xie Tan1,Zhang Zeyu1,Wang Xueyan1,Li Wanjing1,Zhang Yi1,Chen Zhaokai1,Zheng Junnian23,Fang Lin123,Wang Gang123ORCID

Affiliation:

1. Xuzhou Medical University , Xuzhou, China

2. Jiangsu Center for the Collaboration and Innovation of Cancer Biotherapy, Cancer Institute, Xuzhou Medical University , Xuzhou, China

3. Center of Clinical Oncology, Affiliated Hospital of Xuzhou Medical University , Xuzhou, China

Abstract

ABSTRACT Human adenovirus (HAdV) is ubiquitous in the human population, constituting a significant burden of global respiratory diseases. Children and individuals with low immunity are at risk of developing severe infections without approved antiviral treatment for HAdV. Our study demonstrated that TRIM35 inhibited HAdV-C5 early gene transcription, early protein expression, genome replication, and infectious virus progeny production. Furthermore, TRIM35 was found to inhibit HAdV replication by attenuating E1A expression. Mechanistically, TRIM35 interacts with and degrades E1A by promoting its K48-linked ubiquitination. Additionally, K253 and K285 are the key sites necessary for TRIM35 degradation. Moreover, an oncolytic adenovirus carrying shTRIM35 was constructed and observed to exhibit improved oncolysis in vivo , providing new ideas for clinical tumor treatment. Our results expand the broad antiviral activity of TRIM35 and mechanically support its application as a HAdV replication inhibitor. IMPORTANCE E1A is an essential human adenovirus (HAdV) protein responsible for the early replication of adenovirus while interacting with multiple host proteins. Understanding the interaction between HAdV E1A and TRIM35 helps identify effective antiviral therapeutic targets. The viral E1A protein is a crucial activator and regulator of viral transcription during the early infection stages. We first reported that TRIM35 interacts with E1A to resist adenovirus infection. Our study demonstrated that TRIM35 targets E1A to resist adenovirus, indicating the applicability of targeting virus-dependent host factors as a suitable antiviral strategy.

Funder

MOST | National Key Research and Development Program of China

MOST | National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

JPDE | Natural Science Research of Jiangsu Higher Education Institutions of China

Xuzhou Medical University

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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