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PMID: 25341 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Nucleoside transport in mammalian cell membranes. IV. Organomercurials and organomercurial-mercaptonucleoside complexes as probes for nucleoside transport systems in hamster cells.

The Journal of membrane biology ·Vol. 39 ·No. 2-3 ·1978-03-10 ·Pages 159-83

Bibi O, Schwartz J, Eilam Y, Shohami E, Cabantchik ZI

Abstract

Organomercurials form stable stoichiometric complexes with thiolated nucleosides. The complexes inhibited uptake of ribonucleosides and cytosine arabinoside (CAR) in various types of normal and transformed cells. The inhibition was competitive and reversible (Ki = 3--6 micrometer). The interaction between complexes and transport system displayed a 1:1 stoichiometry. Chemical factors which contributed to the inhibitory power were evaluated with a series of S-alkylated derivatives and S--Hg--R complexes of mercaptonucleosides. The inhibitory potency was not determined exclusively by the hydrophobic nature of either the S-alkylated or the S--Hg--R moieties. Chemical modification of cells with penetrating and nonpenetrating organomercurials lead to stimulation of nucleoside uptake and to an increase in its susceptibility to inhibition by S--Hg--R complexes or S-aklylated derivatives of mercaptopurine ribosides. The kinetic and chemical data obtained with nucleoside analogs and with chemical modifiers suggested complex features of nucleoside transport systems. Four distinct classes of sites were implied: (i) a substrate binding site susceptible directly to competitive inhibition by organomercurial-mercaptonucleoside complexes, (ii) an additional site susceptible either to S-arylalkylated or S-mercuriated derivatives of 6-mercaptopurine ribosides, (iii) SH-containing modifier sites which stimulate uridine uptake upon binding of organomercurials, and (iv) SH-containing modifier sites which inhibit the function upon binding of organomercurials. From the observation that only SH sites related to stimulation were susceptible to modification by macromolecular-SH modifier probes, some conclusions can be drawn regarding the disposition of the various sites in the cell membrane in general and among membrane components in particular.

MeSH Terms
Binding, Competitive Biological Transport, Active/drug effects Cell Line Hydrogen-Ion Concentration Kinetics Models, Biological Nucleosides/metabolism Organomercury Compounds/pharmacology Phenylmercury Compounds Structure-Activity Relationship Sulfhydryl Compounds/pharmacology Uridine/metabolism
Chemicals
Nucleosides Organomercury Compounds Phenylmercury Compounds Sulfhydryl Compounds Uridine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Bibi O
Schwartz J
Eilam Y
Shohami E
Cabantchik Z I
References (18)
18 references, click to expand
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Article Info
Journal
The Journal of membrane biology
Abbr.
J Membr Biol
ISSN
0022-2631
Published
1978-03-10
Pages
159-83
Language
English
Region
United States
NLM ID
0211301
Subset
IM
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