Use my Search Websuite to scan PubMed, PMCentral, Journal Hosts and Journal Archives, FullText.
Kick-your-searchterm to multiple Engines kick-your-query now !>
A dictionary by aggregated review articles of nephrology, medicine and the life sciences
Your one-stop-run pathway from word to the immediate pdf of peer-reviewed on-topic knowledge.

suck abstract from ncbi


10.1074/jbc.M113.473520

http://scihub22266oqcxt.onion/10.1074/jbc.M113.473520
suck pdf from google scholar
23970553!3795225!23970553
unlimited free pdf from europmc23970553    free
PDF from PMC    free
html from PMC    free

suck abstract from ncbi


Deprecated: Implicit conversion from float 225.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534

Deprecated: Implicit conversion from float 225.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534

Deprecated: Implicit conversion from float 225.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534

Deprecated: Implicit conversion from float 225.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534

Deprecated: Implicit conversion from float 225.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
pmid23970553      J+Biol+Chem 2013 ; 288 (41): 29238-46
Nephropedia Template TP

gab.com Text

Twit Text FOAVip

Twit Text #

English Wikipedia


  • The epithelial calcium channel TRPV5 is regulated differentially by klotho and sialidase #MMPMID23970553
  • Leunissen EH; Nair AV; Bull C; Lefeber DJ; van Delft FL; Bindels RJ; Hoenderop JG
  • J Biol Chem 2013[Oct]; 288 (41): 29238-46 PMID23970553show ga
  • The transient receptor potential vanilloid type 5 (TRPV5) Ca(2+) channel facilitates transcellular Ca(2+) transport in the distal convoluted tubule (DCT) of the kidney. The channel is glycosylated with a complex type N-glycan and it has been postulated that hydrolysis of the terminal sialic acid(s) stimulate TRPV5 activity. The present study delineates the role of the N-glycan in TRPV5 activity using biochemical assays in Human Embryonic Kidney 293 cells expressing TRPV5, isoelectric focusing and total internal reflection fluorescent microscopy. The anti-aging hormone klotho and other glycosidases stimulate TRPV5-dependent Ca(2+) uptake. Klotho was found to increase the plasma membrane stability of TRPV5, via the TRPV5 N-glycan. Sialidase mimicked this stimulatory action. However, this effect was independent of the N-glycosylation state of TRPV5, since the N-glycosylation mutant (TRPV5(N358Q)) was activated to the same extent. We showed that the increased TRPV5 activity after sialidase treatment is caused by inhibition of lipid raft-mediated internalization. In addition, sialidase modified the N-glycan of transferrin, a model glycoprotein, differently from klotho. Previous studies showed that after klotho treatment, galectin-1 binds the TRPV5 N-glycan and thereby increases TRPV5 activity. However, galectin-3, but not galectin-1, was expressed in the DCT. Furthermore, an increase in TRPV5-mediated Ca(2+) uptake was detected after galectin-3 treatment. In conclusion, two distinct TRPV5 stimulatory mechanisms were demonstrated; a klotho-mediated effect that is dependent on the N-glycan of TRPV5 and a sialidase-mediated stimulation that is lipid raft-dependent and independent of the N-glycan of TRPV5.
  • |Animals[MESH]
  • |Blotting, Western[MESH]
  • |Calcium Channels/genetics/metabolism/*physiology[MESH]
  • |Calcium/metabolism[MESH]
  • |Cell Membrane/drug effects/metabolism/*physiology[MESH]
  • |Epithelial Cells/drug effects/metabolism/*physiology[MESH]
  • |Galectin 3/genetics/metabolism/pharmacology[MESH]
  • |Glucuronidase/genetics/pharmacology[MESH]
  • |Glycoside Hydrolases/genetics/pharmacology[MESH]
  • |Green Fluorescent Proteins/genetics/metabolism[MESH]
  • |HEK293 Cells[MESH]
  • |Humans[MESH]
  • |Klotho Proteins[MESH]
  • |Membrane Microdomains/drug effects/metabolism/physiology[MESH]
  • |Membrane Potentials/drug effects[MESH]
  • |Mice[MESH]
  • |Microscopy, Fluorescence[MESH]
  • |Neuraminidase/genetics/pharmacology[MESH]
  • |Patch-Clamp Techniques[MESH]
  • |Polysaccharides/metabolism[MESH]
  • |Recombinant Proteins/pharmacology[MESH]


  • DeepDyve
  • Pubget Overpricing
  • suck abstract from ncbi

    Linkout box