TY - JOUR
T1 - Impaired immune response and barrier function in GSPD-1-deficient C. elegans infected with Klebsiella pneumoniae
AU - Yang, Wan Hua
AU - Chen, Po Hsiang
AU - Chang, Hung Hsin
AU - Kwok, Hong Luen
AU - Stern, Arnold
AU - Soo, Po Chi
AU - Chen, Jiun Han
AU - Yang, Hung Chi
N1 - Publisher Copyright:
© 2023
PY - 2023/1
Y1 - 2023/1
N2 - gspd-1-RNAi knockdown Caenorhabditis elegans was used as an immune-compromised model to investigate the role of G6PD in host-pathogen interactions. A shorted lifespan, increased bacterial burden and bacterial translocation were observed in gspd-1-knockdown C. elegans infected with Klebsiella pneumoniae (KP). RNAseq revealed that the innate immune pathway, including clc-1 and tsp-1, was affected by gspd-1 knockdown. qPCR confirmed that tight junction (zoo-1, clc-1) and immune-associated genes (tsp-1) were down-regulated in gspd-1-knockdown C. elegans and following infection with KP. The down-regulation of antimicrobial effector lysozymes, including lys-1, lys-2, lys-7, lys-8, ilys-2 and ilys-3, was found in gspd-1-knockdown C. elegans infected with KP. Deletion of clc-1, tsp-1, lys-7, and daf-2 in gspd-1-knockdown C. elegans infected with KP abolished the shorten lifespan seen in the Mock control. GSPD-1 deficiency in C. elegans resulted in bacterial accumulation and lethality, possibly due to a defective immune response. These findings indicate that GSPD-1 has a protective role in microbial defense in C. elegans by preventing bacterial colonization through bacterial clearance.
AB - gspd-1-RNAi knockdown Caenorhabditis elegans was used as an immune-compromised model to investigate the role of G6PD in host-pathogen interactions. A shorted lifespan, increased bacterial burden and bacterial translocation were observed in gspd-1-knockdown C. elegans infected with Klebsiella pneumoniae (KP). RNAseq revealed that the innate immune pathway, including clc-1 and tsp-1, was affected by gspd-1 knockdown. qPCR confirmed that tight junction (zoo-1, clc-1) and immune-associated genes (tsp-1) were down-regulated in gspd-1-knockdown C. elegans and following infection with KP. The down-regulation of antimicrobial effector lysozymes, including lys-1, lys-2, lys-7, lys-8, ilys-2 and ilys-3, was found in gspd-1-knockdown C. elegans infected with KP. Deletion of clc-1, tsp-1, lys-7, and daf-2 in gspd-1-knockdown C. elegans infected with KP abolished the shorten lifespan seen in the Mock control. GSPD-1 deficiency in C. elegans resulted in bacterial accumulation and lethality, possibly due to a defective immune response. These findings indicate that GSPD-1 has a protective role in microbial defense in C. elegans by preventing bacterial colonization through bacterial clearance.
KW - Bacterial colonization
KW - GSPD-1 C. elegans
KW - Klebsiella pneumoniae
KW - Tight junction
UR - http://www.scopus.com/inward/record.url?scp=85147117943&partnerID=8YFLogxK
U2 - 10.1016/j.crmicr.2023.100181
DO - 10.1016/j.crmicr.2023.100181
M3 - 文章
AN - SCOPUS:85147117943
SN - 2666-5174
VL - 4
JO - Current Research in Microbial Sciences
JF - Current Research in Microbial Sciences
M1 - 100181
ER -