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KLC3 Regulates Ciliary Trafficking and Cyst Progression in CILK1 Deficiency-Related Polycystic Kidney Disease

Authors
Rah, GyuyeongCha, HwayeonKim, JooheeSong, JieunKim, HyunhoOh, Yun KyuAhn, CurieKang, MinyongKim, JongminYoo, Kyung HyunKim, Min JungKo, Hyuk WanKo, Je YeongPark, Jong Hoon
Issue Date
Sep-2022
Publisher
AMER SOC NEPHROLOGY
Keywords
CILK1; KLC3; cyst; PKD; cilia
Citation
Journal of the American Society of Nephrology : JASN, v.33, no.9, pp 1726 - 1741
Pages
16
Journal Title
Journal of the American Society of Nephrology : JASN
Volume
33
Number
9
Start Page
1726
End Page
1741
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/152499
DOI
10.1681/ASN.2021111455
ISSN
1046-6673
1533-3450
Abstract
Background Ciliogenesis-associated kinase 1 (CILK1) is a ciliary gene that localizes in primary cilia and regulates ciliary transport. Mutations in CILK1 cause various ciliopathies. However, the pathogenesis of CILK1-deficient kidney disease is unknown. Methods To examine whether CILK1 deficiency causes PKD accompanied by abnormal cilia, we generated mice with deletion of Cilk1 in cells of the renal collecting duct. A yeast two-hybrid system and coimmunoprecipitation (co-IP) were used to identify a novel regulator, kinesin light chain-3 (KLC3), of ciliary trafficking and cyst progression in the Cilk1-deficient model. Immunocytochemistry and co-IP were used to examine the effect of KLC3 on ciliary trafficking of the IFT-B complex and EGFR. We evaluated the effects of these genes on ciliary trafficking and cyst progression by modulating CILK1 and KLC3 expression levels. Results CILK1 deficiency leads to PKD accompanied by abnormal ciliary trafficking. KLC3 interacts with CILK1 at cilia bases and is increased in cyst-lining cells of CILK1-deficient mice. KLC3 overexpression promotes ciliary recruitment of IFT-B and EGFR in the CILK1 deficiency condition, which contributes to the ciliary defect in cystogenesis. Reduction in KLC3 rescued the ciliary defects and inhibited cyst progression caused by CILK1 deficiency. Conclusions Our findings suggest that CILK1 deficiency in renal collecting ducts leads to PKD and promotes ciliary trafficking via increased KLC3.
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