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Study of inflammatory cell death mechanism induced by the pore-forming toxin Vibrio cholerae cytolysin and its implication for the cell-killing pathophysiological function of the toxin

Implementing Organization

Principal Investigator
Prof. Kausik Chattopadhyay
Indian Institute Of Science Education And Research (IISER) Mohali, Punjab
CO-Principal Investigator
Prof. Arunika Mukhopadhaya
Indian Institute Of Science Education And Research (IISER) Mohali, Punjab-140306

Project Overview

Pore-forming toxins (PFTs) are abundant bacterial protein toxins that perforate host cell plasma membranes, leading to cell death. PFTs are considered one of nature's most proficient cell-killing entities. However, PFTs do not always act as non-specific killers, as they can also trigger complex cascades of programmed cell death (PCD) such as apoptosis, pyroptosis, and necroptosis. PCD pathways are crucial for host defense mechanisms, but pathogens can manipulate PCD-induction for their own benefits, such as nutrient acquisition, tissue invasion, and disease establishment. The activation of distinct PCD pathways in target cells in response to a specific PFT can shape the outcome of bacterial pathogenesis and host-pathogen interaction processes. Vibrio cholerae cytolysin (VCC), a prototype bacterial PFT secreted by the cholera pathogen Vibrio cholerae, is a potent virulence factor. VCC can induce apoptosis in target cells and elicit hallmark features of pyroptotic inflammatory cell death. This study aims to explore the mechanistic details of inflammatory cell death pathways generated in target cells in response to VCC and investigate whether this VCC-induced inflammatory cell death is connected to other forms of PCDs, such as apoptosis, in terms of evoking a PANoptotic inflammatory cell death response.

Source

Source
Anusandhan National Research Foundation/Science and Engineering Research Board (SERB), DST 2023-24
Funding Organization
Quick Information
Area of Research
Life Sciences & Biotechnology
Focus Area
Cell Death Mechanisms, Bacterial Pathogenesis
Start Date
2024
End Date
2027
Status
ongoing
Contact
kausik@iisermohali.ac.in
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
Publications
00
No. of Patents
Filed : 00
Grant : 00
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