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  4. Molecular identification of canine podocalyxin-like protein 1 as a renal tubulogenic regulator
 
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Molecular identification of canine podocalyxin-like protein 1 as a renal tubulogenic regulator

Journal
Journal of the American Society of Nephrology
Journal Volume
16
Journal Issue
6
Pages
1612-1622
Date Issued
2005
Author(s)
Cheng H.-Y.
Lin Y.-Y.
Yu C.-Y.
Chen J.-Y.
Shen K.-F.
Lin W.-L.
Liao H.-K.
Chen Y.-J.
Liu C.-H.
Pang V.F.
TZUU-SHUH JOU  
DOI
10.1681/ASN.2004121145
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-26944476343&doi=10.1681%2fASN.2004121145&partnerID=40&md5=9c308f061c98d325ecbfd5bbbba1e94d
https://scholars.lib.ntu.edu.tw/handle/123456789/578223
Abstract
GP135 is an apical membrane protein expressed in polarized MDCK epithelial cells. When cultured in three-dimensional collagen gel, MDCK cells form branching tubules in response to hepatocyte growth factor stimulation in a manner that simulates the embryonic renal development. During this process, GP135 displays transient loss of membranous localization but reappears at the cell surface when nascent lumen emerges from the developing tubules. Despite being used for decades as the canonical hallmark of apical surface, the molecular identity and the significance of the dynamic expression of GP135 during the tubulogenic process remain elusive. For exploring the function of GP135, the full-length cDNA encoding GP135 was obtained. Sequence alignments and features analysis confirm GP135 as a canine homolog of podocalyxin, confirming the finding of an earlier independent study. Immunohistochemical assays on canine kidney sections identified both glomerular and tubular distribution of GP135 along the nephron. Mutant MDCK cells expressing siRNA targeted at two regions of GP135 show defects in hepatocyte growth factor-induced tubulogenesis. Re-expression of full-length and an O-linked glycosylation abbreviated construct of GP135 could recapitulate the tubulogenesis process lacking in siRNA knockdown cells; however, a deletion construct devoid of the cytoplasmic domain failed to rescue the phenotype. In summary, the data identify the MDCK apical domain marker GP135 as a tubular form of podocalyxin and provide evidence for its importance in renal tubulogenesis.
Type
journal article

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