scholarly journals Diverse pathogens activate the host RIDD pathway to subvert BLOS1-directed immune defense

2021 ◽  
Author(s):  
Kelsey Michelle Wells ◽  
Kai He ◽  
Aseem. Pandey ◽  
Ana Cabello ◽  
Dongmei Zhang ◽  
...  

The phagocytosis and destruction of pathogens in lysosomes constitute central elements of innate immune defense. Here, we show that Brucella, the causative agent of brucellosis, the most prevalent bacterial zoonosis globally, subverts this immune defense pathway by activating regulated IRE1α- dependent decay (RIDD) of mRNAs encoding BLOS1, a protein that promotes endosome-lysosome fusion. RIDD-deficient cells and mice harboring a RIDD-incompetent variant of IRE1α were resistant to infection. Non-functional Blos1 struggled to assemble the BLOC-1-related complex (BORC), resulting in differential recruitment of BORC-related lysosome trafficking components, perinuclear trafficking of Brucella-containing vacuoles (BCVs), and enhanced susceptibility to infection. The RIDD-resistant Blos1 variant maintains the integrity of BORC and a higher-level association of BORC-related components that promote centrifugal lysosome trafficking, resulting in enhanced BCV peripheral trafficking and lysosomal-destruction, and resistance to infection. These findings demonstrate that host RIDD activity on BLOS1 regulates Brucella intracellular parasitism by disrupting BORC-directed lysosomal trafficking. Notably, coronavirus MHV also subverted the RIDD-BLOS1 axis to promote intracellular replication. Our work establishes BLOS1 as a novel immune defense factor whose activity is hijacked by diverse pathogens.

2020 ◽  
Vol 104 ◽  
pp. 506-516
Author(s):  
Jingguang Wei ◽  
Chen Li ◽  
Jisheng Ou ◽  
Xin Zhang ◽  
Zetian Liu ◽  
...  

2017 ◽  
Vol 70 ◽  
pp. 13-24 ◽  
Author(s):  
Liang Lu ◽  
Xu Wang ◽  
Sizhong Wu ◽  
Xuejiao Song ◽  
Ziqi Zou ◽  
...  

2016 ◽  
Vol 230 (2) ◽  
pp. 297-302 ◽  
Author(s):  
Martin N. Møller ◽  
Svend Kirkeby ◽  
Per Cayé-Thomasen

2017 ◽  
Vol 313 (5) ◽  
pp. F1061-F1067 ◽  
Author(s):  
Hu Peng ◽  
Jeffrey M. Purkerson ◽  
Andy L. Schwaderer ◽  
George J. Schwartz

Intercalated cells of the collecting duct (CD) are critical for acid-base homeostasis and innate immune defense of the kidney. Little is known about the impact of acidosis on innate immune defense in the distal nephron. Urinary tract infections are mainly due to Escherichia coli and are an important risk factor for development of chronic kidney disease. While the effect of urinary pH on growth of E. coli is well established, in this study, we demonstrate that acidosis increases urine antimicrobial activity due, at least in part, to induction of cathelicidin expression within the CD. Acidosis was induced in rabbits by adding NH4Cl to the drinking water and reducing food intake over 3 days or by casein supplementation. Microdissected CDs were examined for cathelicidin mRNA expression and antimicrobial activity, and cathelicidin protein levels in rabbit urine were measured. Cathelicidin expression in CD cells was detected in kidney sections. CDs from acidotic rabbits expressed three times more cathelicidin mRNA than those isolated from normal rabbits. Urine from acidotic rabbits had significantly more antimicrobial activity (vs. E. coli) than normal urine, and most of this increased activity was blocked by cathelicidin antibody. The antibody had little effect on antimicrobial activity of normal urine. Urine from acidotic rabbits had at least twice the amount of cathelicidin protein as did normal urine. We conclude that metabolic acidosis not only stimulates CD acid secretion but also induces expression of cathelicidin and, thereby, enhances innate immune defense against urinary tract infections via induction of antimicrobial peptide expression.


2015 ◽  
pp. 1-10 ◽  
Author(s):  
Danielle J. Botelho ◽  
Bey Fen Leo ◽  
Christopher B. Massa ◽  
Srijata Sarkar ◽  
Terry D. Tetley ◽  
...  

2006 ◽  
Vol 2 (4) ◽  
pp. 230-236
Author(s):  
Henk P. Haagsman ◽  
Astrid Hogenkamp ◽  
Martin Van Eijk

2003 ◽  
Vol 4 (2) ◽  
pp. 125
Author(s):  
U. Holmskov ◽  
G. Lyster ◽  
J. Hjelmborg ◽  
R. Leth-Larsen ◽  
V. Moeller ◽  
...  

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