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PMID: 41742835 已发表 · ppublish 英语

Deciphering the Impact of RAC1-SPTAN1 in ARPKD Cystogenesis Using Multifaceted Models.

Advanced science (Weinheim, Baden-Wurttemberg, Germany) ·第 13 卷 ·第 25 期 ·2026-05-00

Kuraoka S, Higashi Y, Saito S, Pourgonabadi S, Honjoh H, Ishigaki S, Harris PC, Satlin LM, Yamashita M, Morizane R

摘要

Autosomal recessive polycystic kidney disease (ARPKD) leads to severe renal cysts and progressive kidney dysfunction, with no approved treatments. The absence of such cystic phenotypes in Pkhd1-/- mice underscores the need for novel models that better recapitulate the human disease. We developed kidney organoid-on-chip models that mimic patients' distal-nephron cysts, identifying RAC1/c-FOS as potential therapeutic targets. However, critical questions remain regarding RAC1 activation during cyst formation, cyst origins, and underlying molecular mechanisms. Using a multifaceted approach, organoid-on-chip models, transgenic mice, and patient kidney samples, we identified reduced levels of SPTAN1, a cytoskeletal spectrin protein, as a key regulator of RAC1 activation and cystic pathology. SPTAN1-mutant kidney organoids and mice exhibited distal-nephron cysts, and elevated RAC1/c-FOS expression, consistent with ARPKD patients. Transcriptomics and live imaging revealed altered calcium signaling and increased intracellular calcium. Single-cell RNA-seq identified SLC8A1, a sodium/calcium exchanger, as a marker distinguishing distal/connecting tubules from collecting ducts in human kidneys, predominantly expressed in cystic epithelia in organoids and human ARPKD kidneys. Restoring SPTAN1 in PKHD1-/- organoids via CRISPR activation alleviated cystic phenotypes, normalized intracellular calcium, and reduced RAC1/c-FOS expression. These findings position SPTAN1 as a central player in ARPKD pathogenesis and highlight epigenome editing as a potential therapeutic strategy.

关键词
RAC1 SPTAN1 kidney nephron organoid organ‐on‐chip polycystic kidney disease
文献信息
期刊
Advanced science (Weinheim, Baden-Wurttemberg, Germany)
期刊简称
Adv Sci (Weinh)
ISSN
2198-3844
发表日期
2026-05-00
语言
英语
国家/地区
Germany
NLM ID
101664569
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