sulfhydryl reagents
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2017 ◽  
Vol 312 (4) ◽  
pp. C517-C526 ◽  
Author(s):  
Rongbao Zhao ◽  
Mitra Najmi ◽  
Srinivas Aluri ◽  
I. David Goldman

The substituted cysteine accessibility method (SCAM) is widely used to study the structure and function of channels, receptors and transporters. In its usual application, a cysteine residue is introduced into a protein which lacks native cysteines following which the accessibility of the residue to the aqueous compartment is assessed. Implicit, and generally assumed, is that if the cysteine-substituted residue is not available to react with sulfhydryl reagents it is not exposed to the extracellular compartment or within the aqueous translocation pathway. We demonstrate here, in a Hela-derived cell line, that some cysteine-substituted residues of the proton-coupled folate transporter (PCFT, SLC46A1) that are inaccessible to 2-((biotinoyl)amino)ethyl methanethiosulfonate are glutathionylated by biotinylated glutathione ethyl ester in the absence of an oxidizing agent. Intramolecular disulfide formation involving cysteine-substituted residues was also identified in some instances. These posttranslational modifications limit the accessibility of the cysteine residues to sulfhydryl-reactive reagents and can have a profound impact on the interpretation of SCAM but may not alter function. When a posttranslationally modified residue is used as a reference extracellular control, the high level of exposure required for detection on Western blot results in erroneous detection of otherwise inaccessible intracellular cysteine-substituted residues. The data indicate that in the application of SCAM, when a cysteine-substituted residue does not appear to be accessible to sulfhydryl-reactive reagents, the possibility of a posttranslational modification should be excluded. The data explain the discrepancies in the assessment, and confirm the localization, of the first intracellular loop of PCFT.


2012 ◽  
Vol 302 (9) ◽  
pp. C1405-C1412 ◽  
Author(s):  
Daniel Sanghoon Shin ◽  
Rongbao Zhao ◽  
Enghui H. Yap ◽  
Andras Fiser ◽  
I. David Goldman

Proton-coupled folate transporter (PCFT) mediates folate intestinal absorption and transport across the choroid plexus, processes defective in subjects with hereditary folate malabsorption (HFM). PCFT is also widely expressed in human solid tumors where it contributes to the transport of pemetrexed and other antifolates. This study defines the basis for the functional changes due to a P425R mutation detected in a subject with HFM. Among various substitutions, only positively charged mutants (P425R and P425K) lost function but in a highly selective manner. Transport of reduced folates mediated by P425R-PCFT was virtually abolished; the methotrexate influx Kt was increased fivefold (from 2 to 10 μM). In contrast, the pemetrexed influx Kt mediated by P425R-PCFT was decreased 30% compared with wild-type (WT)-PCFT. Methotrexate inhibition of pemetrexed influx was competitive with a Ki for WT-PCFT comparable to its influx Kt. However, the methotrexate influx Ki for P425R-PCFT was ∼15-fold higher than the WT-PCFT influx Kt and threefold higher than the methotrexate influx Kt for the P425R-PCFT mutant. The confirmed secondary structure and homology modeling place the P425 residue at the junction of the 6th external loop and 12th transmembrane domain, remote from the aqueous translocation pathway, a prediction confirmed by the failure to label P425C-PCFT with N-biotinylaminoethyl methanethiosulfonate-biotin and the absence of inhibition of P425C-PCFT function by water-soluble sulfhydryl reagents. Hence, despite its location, the P425R-PCFT mutation produces a conformational change that fully preserves pemetrexed binding but markedly impairs binding of methotrexate and other folates to the carrier.


2011 ◽  
Vol 6 (3) ◽  
pp. 282-290 ◽  
Author(s):  
Om Prakash ◽  
Nivedita Jaiswal ◽  
Rajesh Kumar Pand

2008 ◽  
Vol 87 (5) ◽  
pp. 246-248
Author(s):  
Hiroko Nomura ◽  
Masahiro Tazawa ◽  
Risa Kuroda ◽  
Hiroaki Shiraishi ◽  
Chiho Sumi-Ichinose ◽  
...  

2006 ◽  
Vol 6 (2) ◽  
pp. 47-55 ◽  
Author(s):  
Leo Pezzementi ◽  
Melissa Rowland ◽  
Matthew Wolfe ◽  
Igor Tsigelny
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