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Proteostasis in Podocytes: Role of Cargo Receptor Surf4 and Collagen IV Trafficking

Preprint Created on 02 Oct 2026 bioRxiv

Protein misfolding in the endoplasmic reticulum (ER) of podocytes/glomerular epithelial cells (GECs) induces ER stress and contributes to the pathogenesis of glomerular disease. Activation of IRE1 and consequently the unfolded protein response (UPR) and autophagy sustains proteostasis. The present study examines the role of Surf4 and collagen IV-5 (COL4A5) trafficking in podocyte proteostasis. Glomerular Surf4 protein expression increased in IRE1-replete mice with experimental focal segmental glomerulosclerosis (FSGS) compared to podocyte-IRE1 knockout mice with FSGS and control mice. Glomerular Surf4 gene expression was greater in human FSGS and membranous nephropathy compared to healthy controls. In cultured GECs, basal Surf4 expression was greater in IRE1-replete (control) compared to IRE1 knockout GECs, although ER stress (tunicamycin treatment) did not increase Surf4 despite activating the UPR. Tunicamycin enhanced autophagy (LC3-II) in an IRE1-dependent manner, and the amount of Surf4 localized in autophagosomes. In GECs, tunicamycin increased the amount and colocalization of endogenous COL4A5 or ectopically-expressed COL4A5-wild type (WT) and Surf4 in autophagosomes. Compared to COL4A5-WT, the human COL4A5-C1567R mutant (which is misfolded) showed enhanced basal colocalization with Surf4 in autophagosomes; colocalization was similar to COL4A5-WT after tunicamycin treatment. Degradation of COL4A5-C1567R was more rapid compared to COL4A5-WT and was comparable to degradation of COL4A5-WT in the presence of tunicamycin. Thus, during ER stress, subsets of Surf4 and COL4A5 are redirected from the secretory pathway to autophagy. Surf4 may help deliver misfolded ER cargo, such as COL4A5 for autosomal degradation, thereby sustaining proteostasis in podocytes.

Cybulsky, A. V., Papillon, J., Konde Bilogui, C.-L., Shih, R.

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