Literature DB >> 11728985

Biochemical characterization of bona fide polycystin-1 in vitro and in vivo.

A Boletta1, F Qian, L F Onuchic, A Bragonzi, M Cortese, P M Deen, P J Courtoy, M R Soria, O Devuyst, L Monaco, G G Germino.   

Abstract

The most common form of autosomal dominant polycystic kidney disease (PKD) results from mutation of the PKD1 gene on chromosome 16p13.3. The gene encodes a 14-kb messenger RNA that is predicted to express a 462-kd membrane protein. The gene product, polycystin-1, has a large extracellular portion composed of a novel combination of protein-protein interacting domains and is postulated to be a plasma membrane receptor involved in cell-cell/matrix interactions. However, slow progress has been made in the characterization of polycystin-1 or the determination of its function. In fact, the protein is expressed at very low levels in tissues and cell lines and previous efforts directed at expression of recombinant protein had been largely unsuccessful. We have recently developed constructs of full-length human PKD1 complementary (cDNA) that can be expressed in both a stable and transient fashion in mammalian cells. We used these systems to characterize our antibodies and to track the protein in vivo. We report here the first biochemical characterization of recombinant polycystin-1 and show that the protein is a 520-kd glycosylated polypeptide with an unglycosylated core of 460 kd. Subcellular fractionation as well as biotinylation studies confirmed that the protein is plasma-membrane associated. Furthermore, we show that the recombinant protein localizes to cell-cell junctions in polarized madin darby canine kidney cells as revealed by indirect immunofluorescence. Our data represent the first characterization of polycystin-1 performed under highly controlled conditions.

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Year:  2001        PMID: 11728985     DOI: 10.1053/ajkd.2001.29282

Source DB:  PubMed          Journal:  Am J Kidney Dis        ISSN: 0272-6386            Impact factor:   8.860


  18 in total

1.  Altered trafficking and stability of polycystins underlie polycystic kidney disease.

Authors:  Yiqiang Cai; Sorin V Fedeles; Ke Dong; Georgia Anyatonwu; Tamehito Onoe; Michihiro Mitobe; Jian-Dong Gao; Dayne Okuhara; Xin Tian; Anna-Rachel Gallagher; Zhangui Tang; Xiaoli Xie; Maria D Lalioti; Ann-Hwee Lee; Barbara E Ehrlich; Stefan Somlo
Journal:  J Clin Invest       Date:  2014-11-03       Impact factor: 14.808

Review 2.  ADPKD: molecular characterization and quest for treatment.

Authors:  Shigeo Horie
Journal:  Clin Exp Nephrol       Date:  2005-12       Impact factor: 2.801

Review 3.  Ciliary dysfunction in polycystic kidney disease: an emerging model with polarizing potential.

Authors:  Robert J Kolb; Surya M Nauli
Journal:  Front Biosci       Date:  2008-05-01

4.  Novel functional complexity of polycystin-1 by GPS cleavage in vivo: role in polycystic kidney disease.

Authors:  Almira Kurbegovic; Hyunho Kim; Hangxue Xu; Shengqiang Yu; Julie Cruanès; Robin L Maser; Alessandra Boletta; Marie Trudel; Feng Qian
Journal:  Mol Cell Biol       Date:  2014-06-23       Impact factor: 4.272

5.  Cleavage of polycystin-1 requires the receptor for egg jelly domain and is disrupted by human autosomal-dominant polycystic kidney disease 1-associated mutations.

Authors:  Feng Qian; Alessandra Boletta; Anil K Bhunia; Hangxue Xu; Lijuan Liu; Ali K Ahrabi; Terry J Watnick; Fang Zhou; Gregory G Germino
Journal:  Proc Natl Acad Sci U S A       Date:  2002-12-13       Impact factor: 11.205

Review 6.  Cell polarity and cystic kidney disease.

Authors:  Sorin Fedeles; Anna Rachel Gallagher
Journal:  Pediatr Nephrol       Date:  2012-11-16       Impact factor: 3.714

Review 7.  Strategies targeting cAMP signaling in the treatment of polycystic kidney disease.

Authors:  Vicente E Torres; Peter C Harris
Journal:  J Am Soc Nephrol       Date:  2013-12-12       Impact factor: 10.121

Review 8.  Regulation of polycystin expression, maturation and trafficking.

Authors:  Jinghua Hu; Peter C Harris
Journal:  Cell Signal       Date:  2020-04-08       Impact factor: 4.315

9.  Receptor protein tyrosine phosphatases are novel components of a polycystin complex.

Authors:  Catherine A Boucher; Heather H Ward; Ruth L Case; Katie S Thurston; Xiaohong Li; Andrew Needham; Elsa Romero; Deborah Hyink; Seema Qamar; Tamara Roitbak; Samantha Powell; Christopher Ward; Patricia D Wilson; Angela Wandinger-Ness; Richard N Sandford
Journal:  Biochim Biophys Acta       Date:  2010-11-29

10.  Emerging evidence of a link between the polycystins and the mTOR pathways.

Authors:  Alessandra Boletta
Journal:  Pathogenetics       Date:  2009-10-28
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