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CLUH functions as a negative regulator of inflammation in human macrophages and determines ulcerative colitis pathogenesis
Shaziya Khan, Desh Raj, Shikha Sahu, Anam Naseer, Nishakumari C. Singh, Sunaina Kumari, Sharmeen Ishteyaque, Jyotsna Sharma, Promila Lakra, Madhav N. Mugale, Arun Kumar Trivedi, Mrigank Srivastava, Tulika Chandra, Vivek Bhosale, Manoj Kumar Barthwal, Shashi Kumar Gupta, Kalyan Mitra, Aamir Nazir, Uday C. Ghoshal, Amit Lahiri
Shaziya Khan, Desh Raj, Shikha Sahu, Anam Naseer, Nishakumari C. Singh, Sunaina Kumari, Sharmeen Ishteyaque, Jyotsna Sharma, Promila Lakra, Madhav N. Mugale, Arun Kumar Trivedi, Mrigank Srivastava, Tulika Chandra, Vivek Bhosale, Manoj Kumar Barthwal, Shashi Kumar Gupta, Kalyan Mitra, Aamir Nazir, Uday C. Ghoshal, Amit Lahiri
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Research Article Gastroenterology

CLUH functions as a negative regulator of inflammation in human macrophages and determines ulcerative colitis pathogenesis

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Abstract

Altered mitochondrial function without a well-defined cause has been documented in patients with ulcerative colitis (UC). In our efforts to understand UC pathogenesis, we observed reduced expression of clustered mitochondrial homolog (CLUH) only in the active UC tissues compared with the unaffected areas from the same patient and healthy controls. Stimulation with bacterial Toll-like receptor (TLR) ligands similarly reduced CLUH expression in human primary macrophages. Further, CLUH negatively regulated secretion of proinflammatory cytokines IL-6 and TNF-α and rendered a proinflammatory niche in TLR ligand–stimulated macrophages. CLUH was further found to bind to mitochondrial fission protein dynamin related protein 1 (DRP1) and regulated DRP1 transcription in human macrophages. In the TLR ligand–stimulated macrophages, absence of CLUH led to enhanced DRP1 availability for mitochondrial fission, and a smaller dysfunctional mitochondrial pool was observed. Mechanistically, this fissioned mitochondrial pool in turn enhanced mitochondrial ROS production and reduced mitophagy and lysosomal function in CLUH-knockout macrophages. Remarkably, our studies in the mouse model of colitis with CLUH knockdown displayed exacerbated disease pathology. Taken together, this is the first report to our knowledge explaining the role of CLUH in UC pathogenesis, by means of regulating inflammation via maintaining mitochondrial-lysosomal functions in the human macrophages and intestinal mucosa.

Authors

Shaziya Khan, Desh Raj, Shikha Sahu, Anam Naseer, Nishakumari C. Singh, Sunaina Kumari, Sharmeen Ishteyaque, Jyotsna Sharma, Promila Lakra, Madhav N. Mugale, Arun Kumar Trivedi, Mrigank Srivastava, Tulika Chandra, Vivek Bhosale, Manoj Kumar Barthwal, Shashi Kumar Gupta, Kalyan Mitra, Aamir Nazir, Uday C. Ghoshal, Amit Lahiri

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Figure 6

CLUH regulates cytokine production downstream of LPS by maintaining mitochondrial function and dynamics in human MDMs.

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CLUH regulates cytokine production downstream of LPS by maintaining mito...
Human MDMs were transfected with scrambled or CLUH siRNA for 24 hours and treated with 100 ng/mL LPS for 24 hours. (A) IL-6 secretion after treatment with or without Mito-TEMPO (1 μM, to inhibit mitoROS production) or 2-deoxy-d-glucose (5 mM, to inhibit glycolysis). (B) IL-6 secretion after treatment with or without CTPI-2 (1 mM, to inhibit mitochondrial citrate export). (C) IL-6 secretion after treatment with or without EtBr (50 ng/mL to reduce mtDNA quantity). (D) IL-6 secretion after transfection with or without POLG siRNA. (E) IL-6 secretion after treatment with or without Mdivi1 (50 μM, to inhibit mitochondrial fission). Sources of reagents are in Supplemental Table 3. (F) IL-6 secretion after treatment with or without 2,4 DNP (50 μM, to activate mitophagy). (Pooled data from n = 8 donors.) Mean ± SEM; **P < 0.01; ****P < 0.0001 as determined by 1-way ANOVA.

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