Literature DB >> 32610050

Genetic reduction of cilium length by targeting intraflagellar transport 88 protein impedes kidney and liver cyst formation in mouse models of autosomal polycystic kidney disease.

Lina Shao1, Wassim El-Jouni2, Fanwu Kong3, Janani Ramesh3, Radhe Shantha Kumar3, Xiaogang Shen1, Jingjing Ren1, Shruti Devendra3, Arianna Dorschel3, Maoqing Wu3, Ivan Barrera3, Azadeh Tabari3, Kang Hu1, Nadeem Haque3, Ilyas Yambayev3, Shiqi Li3, Amresh Kumar3, Tapas Ranjan Behera3, Gregory McDonough3, Masahito Furuichi3, Michael Xifaras3, Tzongshi Lu3, Rami Mohammad Alhayaza3, Koji Miyabayashi3, Qiuling Fan3, Amrendra K Ajay3, Jing Zhou4.   

Abstract

Polycystin-1 (PC1) and -2 (PC2), products of the PKD1 and PKD2 genes, are mutated in autosomal dominant polycystic kidney disease (ADPKD). They localize to the primary cilia; however, their ciliary function is in dispute. Loss of either the primary cilia or PC1 or PC2 causes cyst formation. However, loss of both cilia and PC1 or PC2 inhibits cyst growth via an unknown pathway. To help define a pathway, we studied cilium length in human and mouse kidneys. We found cilia are elongated in kidneys from patients with ADPKD and from both Pkd1 and Pkd2 knockout mice. Cilia elongate following polycystin inactivation. The role of intraflagellar transport proteins in Pkd1-deficient mice is also unknown. We found that inactivation of Ift88 (a gene expressing a core component of intraflagellar transport) in Pkd1 knockout mice, as well as in a new Pkd2 knockout mouse, shortened the elongated cilia, impeded kidney and liver cystogenesis, and reduced cell proliferation. Multi-stage in vivo analysis of signaling pathways revealed β-catenin activation as a prominent, early, and sustained event in disease onset and progression in Pkd2 single knockout but not in Pkd2.Ift88 double knockout mouse kidneys. Additionally, AMPK, mTOR and ERK pathways were altered in Pkd2 single knockout mice but only AMPK and mTOR pathway alteration were rescued in Pkd2.Ift88 double knockout mice. Thus, our findings advocate an essential role of polycystins in the structure and function of the primary cilia and implicate β-catenin as a key inducer of cystogenesis downstream of the primary cilia. Our data suggest that modulating cilium length and/or its associated signaling events may offer novel therapeutic approaches for ADPKD.
Copyright © 2020. Published by Elsevier Inc.

Entities:  

Keywords:  Pkd1 knockout; Pkd2.Ift88 double knockout; cystogenesis; primary cilia; β-catenin

Mesh:

Substances:

Year:  2020        PMID: 32610050     DOI: 10.1016/j.kint.2020.05.049

Source DB:  PubMed          Journal:  Kidney Int        ISSN: 0085-2538            Impact factor:   10.612


  13 in total

1.  Multiomic identification of factors associated with progression to cystic kidney disease in mice with nephron Ift88 disruption.

Authors:  Chunyan Hu; Katherine Beebe; Edgar J Hernandez; Jose M Lazaro-Guevara; Monica P Revelo; Yufeng Huang; J Alan Maschek; James E Cox; Donald E Kohan
Journal:  Am J Physiol Renal Physiol       Date:  2021-12-20

2.  1-Indanone retards cyst development in ADPKD mouse model by stabilizing tubulin and down-regulating anterograde transport of cilia.

Authors:  Xiao-Wei Li; Jian-Hua Ran; Hong Zhou; Jin-Zhao He; Zhi-Wei Qiu; Shu-Yuan Wang; Meng-Na Wu; Shuai Zhu; Yong-Pan An; Ang Ma; Min Li; Ya-Zhu Quan; Nan-Nan Li; Chao-Qun Ren; Bao-Xue Yang
Journal:  Acta Pharmacol Sin       Date:  2022-07-29       Impact factor: 7.169

Review 3.  Polycystic Liver Disease: Pathophysiology, Diagnosis and Treatment.

Authors:  Luiz Fernando Norcia; Erika Mayumi Watanabe; Pedro Tadao Hamamoto Filho; Claudia Nishida Hasimoto; Leonardo Pelafsky; Walmar Kerche de Oliveira; Ligia Yukie Sassaki
Journal:  Hepat Med       Date:  2022-09-29

4.  Ttc21b deficiency attenuates autosomal dominant polycystic kidney disease in a kidney tubular- and maturation-dependent manner.

Authors:  Wei Wang; Luciane M Silva; Henry H Wang; Matthew A Kavanaugh; Tana S Pottorf; Bailey A Allard; Damon T Jacobs; Rouchen Dong; Joseph T Cornelius; Aakriti Chaturvedi; Katherine I Swenson-Fields; Timothy A Fields; Michele T Pritchard; Madhulika Sharma; Chad Slawson; Darren P Wallace; James P Calvet; Pamela V Tran
Journal:  Kidney Int       Date:  2022-05-27       Impact factor: 18.998

Review 5.  Genetics, pathobiology and therapeutic opportunities of polycystic liver disease.

Authors:  Paula Olaizola; Pedro M Rodrigues; Francisco J Caballero-Camino; Laura Izquierdo-Sanchez; Patricia Aspichueta; Luis Bujanda; Nicholas F Larusso; Joost P H Drenth; Maria J Perugorria; Jesus M Banales
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2022-05-13       Impact factor: 73.082

6.  IFT-A deficiency in juvenile mice impairs biliary development and exacerbates ADPKD liver disease.

Authors:  Wei Wang; Tana S Pottorf; Henry H Wang; Ruochen Dong; Matthew A Kavanaugh; Joseph T Cornelius; Katie L Dennis; Udayan Apte; Michele T Pritchard; Madhulika Sharma; Pamela V Tran
Journal:  J Pathol       Date:  2021-05-21       Impact factor: 7.996

7.  Quinomycin A reduces cyst progression in polycystic kidney disease.

Authors:  Priyanka S Radadiya; Mackenzie M Thornton; Emily A Daniel; Jessica Y Idowu; Wei Wang; Brenda Magenheimer; Dharmalingam Subramaniam; Pamela V Tran; James P Calvet; Darren P Wallace; Madhulika Sharma
Journal:  FASEB J       Date:  2021-05       Impact factor: 5.191

8.  IFT88 deficiency in proximal tubular cells exaggerates cisplatin-induced injury by suppressing autophagy.

Authors:  Shixuan Wang; Shougang Zhuang; Zheng Dong
Journal:  Am J Physiol Renal Physiol       Date:  2021-07-12

Review 9.  Intraflagellar Transport Proteins as Regulators of Primary Cilia Length.

Authors:  Wei Wang; Brittany M Jack; Henry H Wang; Matthew A Kavanaugh; Robin L Maser; Pamela V Tran
Journal:  Front Cell Dev Biol       Date:  2021-05-19

10.  Sex-Dependent Effects of Nephron Ift88 Disruption on BP, Renal Function, and Cystogenesis.

Authors:  Chunyan Hu; Jayalakshmi Lakshmipathi; Elizabeth Binning; Kelly A Hyndman; Deborah Stuart; Donald E Kohan
Journal:  J Am Soc Nephrol       Date:  2021-05-27       Impact factor: 14.978

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