Publication:
Platelet-derived growth factor-D expression in developing and mature human kidneys

dc.contributor.authorChangsirikulchai S.
dc.contributor.authorHudkins K.L.
dc.contributor.authorGoodpaster T.A.
dc.contributor.authorVolpone J.
dc.contributor.authorTopouzis S.
dc.contributor.authorGilbertson D.G.
dc.contributor.authorAlpers C.E.
dc.date.accessioned2021-04-05T04:33:10Z
dc.date.available2021-04-05T04:33:10Z
dc.date.issued2002
dc.date.issuedBE2545
dc.description.abstractBackground. Platelet-derived growth factor (PDGF) is a family of growth regulatory molecules composed of sulfide-bonded dimeric structures. Two well-studied PDGF peptides (PDGF-A and PDGF-B) have been shown to mediate a wide range of biological effects. PDGF-D is a newly recognized member of the PDGF family. Initial studies of the PDGF-D gene found its expression in cells of the vascular wall, suggesting that it could participate in vascular development and pathology. However, its localization in human kidney tissues has never been studied. Methods. PDGF-D expression in fetal (N = 30) and adult (N = 25) human kidney tissues was examined by immunohistochemistry using an affinity-purified antibody raised to human PDGF-D. Antibody absorption with the immunizing peptide was employed to confirm the specificity of this antibody. PDGF-D protein and gene expression in human kidneys also were demonstrated by Western blotting and reverse transcription-polymerase chain reaction (RT-PCR). Results. In the developing kidney, PDGF-D was first expressed by epithelial cells of comma- and S-shaped structures of the developing nephron, and most consistently in the visceral epithelial cells in the later stages of glomerular differentiation. In addition, PDGF-D could be found in mesenchymal, presumptively fibroblast cells in the interstitium of developing renal pelvis and in fetal smooth muscle cells in arterial vessels. In the adult normal kidney, PDGF-D was expressed by the visceral epithelial cells. There was persistent expression in arterial smooth muscle cells as well as in some neointimal smooth muscle cells of arteriosclerotic vessels, and expression in smooth muscle cells of vasa rectae in the medulla. PDGF-D could be identified at the basolateral membrane of some injured tubules in areas of chronic tubulointerstitial injury routinely encountered in aging kidneys. Western blotting of homogenates of adult kidneys demonstrated monospecific bands at 50 kD corresponding to previously established size parameter for this protein. RT-PCR of human kidney RNA resulted in a 918 basepair band, the sequence of which corresponded to human PDGF-D (Genbank number AF336376). Conclusions. To our knowledge, these are the first studies to localize PDGF-D in human kidneys and suggest that PDGF-D may have a role in kidney development. PDGF-D was shown to bind to PDGF β receptor, which localizes to mesangial cells, parietal epithelial cells, and interstitial fibroblasts, suggesting potential paracrine interactions between those cells and the visceral epithelium.
dc.format.mimetypeapplication/pdf
dc.identifier.citationKidney International. Vol 62, No.6 (2002), p.2043-2054
dc.identifier.doi10.1046/j.1523-1755.2002.00662.x
dc.identifier.issn852538
dc.identifier.other2-s2.0-0036434863
dc.identifier.urihttps://hdl.handle.net/20.500.14740/6829
dc.rights.holderมหาวิทยาลัยศรีนครินทรวิโรฒ
dc.subject.otherLymphokine
dc.subject.otherMessenger RNA
dc.subject.otherPDGFD protein, human
dc.subject.otherPlatelet derived growth factor
dc.subject.otherPlatelet derived growth factor
dc.subject.otherPlatelet derived growth factor beta receptor
dc.subject.otherPlatelet derived growth factor D
dc.subject.otherRNA
dc.subject.otherUnclassified drug
dc.subject.otherAdult
dc.subject.otherAntibody specificity
dc.subject.otherArticle
dc.subject.otherChemistry
dc.subject.otherFetus
dc.subject.otherGene expression regulation
dc.subject.otherGenetics
dc.subject.otherHuman
dc.subject.otherImmunohistochemistry
dc.subject.otherImmunology
dc.subject.otherKidney
dc.subject.otherMolecular genetics
dc.subject.otherPhysiology
dc.subject.otherPrenatal development
dc.subject.otherReverse transcription polymerase chain reaction
dc.subject.otherWestern blotting
dc.subject.otherBasolateral membrane
dc.subject.otherCell differentiation
dc.subject.otherCell interaction
dc.subject.otherControlled study
dc.subject.otherFibroblast
dc.subject.otherGene expression
dc.subject.otherGlomerulus epithelium
dc.subject.otherHuman cell
dc.subject.otherHuman tissue
dc.subject.otherInterstitial nephritis
dc.subject.otherKidney development
dc.subject.otherKidney epithelium
dc.subject.otherKidney homogenate
dc.subject.otherKidney interstitium
dc.subject.otherNephron
dc.subject.otherNucleotide sequence
dc.subject.otherPriority journal
dc.subject.otherProtein expression
dc.subject.otherProtein family
dc.subject.otherProtein function
dc.subject.otherProtein localization
dc.subject.otherSmooth muscle fiber
dc.subject.otherAdult
dc.subject.otherAntibody Specificity
dc.subject.otherBlotting, Western
dc.subject.otherFetus
dc.subject.otherGene Expression Regulation, Developmental
dc.subject.otherHumans
dc.subject.otherImmunohistochemistry
dc.subject.otherKidney
dc.subject.otherLymphokines
dc.subject.otherMolecular Sequence Data
dc.subject.otherPlatelet-Derived Growth Factor
dc.subject.otherReverse Transcriptase Polymerase Chain Reaction
dc.subject.otherRNA, Messenger
dc.titlePlatelet-derived growth factor-D expression in developing and mature human kidneys
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-0036434863&doi=10.1046%2fj.1523-1755.2002.00662.x&partnerID=40&md5=fa044955817f9206a2459c85be50974f

Files