Targeting the Cav1.2-KCa1.1 axis prevents rabies virus internalization and protects against lethal infection

Rabies is an almost always fatal disease caused by rabies virus (RABV). Once RABV enters the central nervous system, the mortality rate is almost 100%. Therefore, preventing RABV from entering the nervous system is crucial for the development of anti-RABV therapeutics. Here, we found that the L-type calcium channel Cav1.2 pore-forming subunit (Ca v 1.2) and potassium calcium-activated channel subfamily M alpha 1 (KCa1.1) are involved in the internalization of RABV using an siRNA approach. RABV glycoprotein interacts with Ca v 1.2, a process that is required for the subsequent activation of the channel. The activated Ca v 1.2 then interacts with and activates KCa1.1 to regulate the endocytosis of RABV by promoting the F-actin polymerization. Importantly, diltiazem, a blocker of Ca v 1.2 and an FDA-approved drug, has been shown to substantially reduce mortality in mice infected with RABV. Approximately 70% of mice survived following treatment with diltiazem at 50 mg/kg, whereas the 25 mg/kg dose resulted in 26% survival. Our findings suggest that Ca v 1.2 is a promising target for the development of antiviral drugs against rabies and enhances our comprehension of the RABV entry mechanism.

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Publication Details

Journal
PLoS Pathogens
Published
2026-10-06
DOI
https://doi.org/10.1371/journal.ppat.1014675
Primary Topic
Rabies epidemiology and control
Type
article
Field-Weighted Citation Impact
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article

Targeting the Cav1.2-KCa1.1 axis prevents rabies virus internalization and protects against lethal infection

Jinying Ge, Zhigao Bu, Ziruo Sun, Zhiyuan Wen et al.
PLoS Pathogens
Rabies epidemiology and control
article

Targeting the Cav1.2-KCa1.1 axis prevents rabies virus internalization and protects against lethal infection

Jinying Ge, Zhigao Bu, Ziruo Sun, Zhiyuan Wen, Jinliang Wang, Wenjing Sun, Nannan Lv, Junyu Chen, Xijun Wang, Weiye Chen, Lei Shuai, Peiran Zhou, Tengteng Mi, Jinyu Wang, Zhenbo Zhao, Mengjie Yang, Chong Wang, Xianjing Zhou, Jinqiu Wang
article en

Abstract

Rabies is an almost always fatal disease caused by rabies virus (RABV). Once RABV enters the central nervous system, the mortality rate is almost 100%. Therefore, preventing RABV from entering the nervous system is crucial for the development of anti-RABV therapeutics. Here, we found that the L-type calcium channel Cav1.2 pore-forming subunit (Ca v 1.2) and potassium calcium-activated channel subfamily M alpha 1 (KCa1.1) are involved in the internalization of RABV using an siRNA approach. RABV glycoprotein interacts with Ca v 1.2, a process that is required for the subsequent activation of the channel. The activated Ca v 1.2 then interacts with and activates KCa1.1 to regulate the endocytosis of RABV by promoting the F-actin polymerization. Importantly, diltiazem, a blocker of Ca v 1.2 and an FDA-approved drug, has been shown to substantially reduce mortality in mice infected with RABV. Approximately 70% of mice survived following treatment with diltiazem at 50 mg/kg, whereas the 25 mg/kg dose resulted in 26% survival. Our findings suggest that Ca v 1.2 is a promising target for the development of antiviral drugs against rabies and enhances our comprehension of the RABV entry mechanism.

PLoS PathogensVol. 22(10)
Chinese Academy of Agricultural Sciences (CN), Harbin Veterinary Research Institute (CN), Yangzhou University (CN)
Openalex Percentile: Top 14%
Rabies epidemiology and control
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Targeting the Cav1.2-KCa1.1 axis prevents rabies virus internalization and protects against lethal infection — Jinying Ge, Zhigao Bu, et al. · PLoS Pathogens (2026) | TGRS Research Map | TGRS