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Apical proximal tubule fatty acid uptake–generated ceramides cause endoplasmic reticulum stress from altered membrane fluidity
Zhiyu Liu, Robert J. Gaivin, Shenaz Khan, Vincent Li, Amal Chaba, Fraser J. Moss, Usman Sabir, Takhar Kasumov, Tingwei Mu, Jeffrey R. Schelling
Zhiyu Liu, Robert J. Gaivin, Shenaz Khan, Vincent Li, Amal Chaba, Fraser J. Moss, Usman Sabir, Takhar Kasumov, Tingwei Mu, Jeffrey R. Schelling
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Research Article Cell biology Nephrology

Apical proximal tubule fatty acid uptake–generated ceramides cause endoplasmic reticulum stress from altered membrane fluidity

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Abstract

Circulating fatty acids (FAs) are constitutively taken up by basolateral kidney proximal tubule transporters and are the preferred metabolic substrate. In many chronic kidney diseases, the damaged glomerular filtration barrier permits passage of albumin-bound FAs, which are reabsorbed by apical FA transport protein-2 (FATP2). Bilateral FA uptake leads to lipotoxicity and progressive renal function decline, but the relative apical versus basolateral contribution and intracellular mechanisms are not established. Apical or bilateral (but not basolateral) palmitate incubation with human proximal tubule cells stimulated endoplasmic reticulum (ER) stress gene expression, ER stress pathway activation, and ER fragmentation. Apical or bilateral palmitate was associated with reduced lipid droplets and decreased expression of ER-localized lipid droplet biogenesis transcripts. Inhibition of lipid droplet formation also precipitated ER stress, suggesting diminished sequestration of FA metabolites as the cause. Indeed, C16:0 ceramide was increased in bilateral palmitate-treated cells and in kidneys from mice that phenocopy progressive diabetic kidney disease. Ceramide synthesis inhibition abrogated ER stress, and transfection with C16:0 ceramide decreased ER membrane fluidity and caused ER stress. We conclude that aberrant filtration and uptake of FAs by apical FATP2 exceeded the capacity for lipid droplet incorporation and led to cytotoxicity from ceramide-induced ER lipid bilayer stress.

Authors

Zhiyu Liu, Robert J. Gaivin, Shenaz Khan, Vincent Li, Amal Chaba, Fraser J. Moss, Usman Sabir, Takhar Kasumov, Tingwei Mu, Jeffrey R. Schelling

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Figure 4

AP palmitate causes ER fragmentation.

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AP palmitate causes ER fragmentation.
(A–D) ERs were labeled with calnex...
(A–D) ERs were labeled with calnexin antibodies and nuclei counterstained with DAPI from proximal tubule cells on permeable supports exposed to 0.2% AP albumin carrier (A), BL palmitate (100 μM, 16 hours, 37°C) complexed with 0.2% albumin (B), AP palmitate (100 μM, 16 hours, 37°C) complexed with 0.2% albumin (C), or AP + BL palmitate (100 μM, 16 hours, 37°C) complexed with 0.2% albumin (D). Scale bars: 10 μm. (E) AP or BL surfaces of human proximal tubule cells on permeable supports were incubated with albumin (0.2%) or albumin (0.2%) complexed with palmitate (100 μM) for 16 hours at 37°C. Cells were fixed and labeled for ER with calnexin antibodies as in A–D, and ER length was quantified, as described in Methods. Each symbol represents the mean of multiple ER measurements from a single cell and 3 experiments. Data are mean ± SD. *P < 0.001 compared with BL Alb + Palm group by ANOVA and Tukey’s post hoc test for multiple comparisons.

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