Characterization of the tobacco glycoprotein surface binding property of heart and skeletal muscle cells. I. Modulation of the heart cell membrane TGP interaction by anti-TGP IgG.

Characterization of the tobacco glycoprotein surface binding property of heart and skeletal muscle cells. I. Modulation of the heart cell membrane TGP interaction by anti-TGP IgG.
复制标题

心脏和骨骼肌细胞的烟草糖蛋白表面结合特性的表征。

DOI:
10.1007/s002040050151
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发表时间:
1995
影响因子:
6.1
通讯作者:
Becker,CG
Becker,CG
中科院分区:
医学2区
文献类型:
--
作者:
Santos-Buch,CA;Hall,HR;Farfan,F;Orlow,I;Firpo,A;vonKreuter,BF;Becker,CG

文献摘要

相似文献

Monolayers of L6rat skeletal myoblast cells formed surface binding isotherms with the purified tobacco leaf glycoprotein TGP1and the enriched cigarette tar glycoprotein TGP2. Scatchard analysis showed that the binding in the range of the limited concentrations tested was to a single class molecule and the calculated affinity constant (Kd) for TGP1and TGP2showed similar values (9.78 × 10−13M and 3.09 × 10−13M, respectively). The bound TGPs were almost totally displaced by excess nonradiolabeled molecules. The calculated Bmaxof the L6myoblast monolayer was 2.93 fmol for TGP1and 0.217 fmol for TGP2per 32.2 mm2. Guinea pig heart sarcolemma binding isotherms were also formed with radiolabeled TGP1and TGP2. The interaction of tobacco leaf TGP1with the heart cell membranes was irreversible because only 15–20% of the bound TGP1was displaced by 100-fold, non-labeled molecules but the interaction of tar TGP2with heart sarcolemma was reversible and probably saturable. The heart sarcolemma TGP2affinity constant (Kd) was 5.88 × 10−7M and the Bmax, 2.45 × 10−8M per 12.5 μg sarcolemma. Pretreatment of heart sarcolemma with increasing concentrations of leaf TGP1did not displace tar TGP2binding but its absorption on the membrane resulted in increased TGP2sarcolemma attachment by a complex and unexplained mechanisms. Increasing concentrations of the sera of 10 of 15 guinea pigs (67%) that received mainstream emissions of tobacco smoke from a University of Kentucky cigarette smoking machine for 152 days, displaced cigarette tar TGP2heart cell sarcolemma attachment and this inhibition was significantly different from that produced by the sera of sham smoked and of nonexposed animals (Mann-Whitney test,p=0.0082). Staphylococcus protein A inhibited the displacement of TGP2produced by the sera of cigarette smoke exposed guinea pigs and this observation indicated that this action was mediated by IgG molecules. The specific immunoprecipitation of a radiolabeled surface epitope of the L6myoblast monolayers pretreated with TGP1or TGP2by immune IgG against TGP2and by the IgG of an antiserum against standard TGP showed that the tobacco glycoproteins attached to a unit polypeptide of the plasma membrane of the muscle cells of approximately 76 kDa. These data support the notion that TGP molecules in cigarette smoke are absorbed systemically on smoking and may have a direct toxic effect when they attach to the surface TGP binding proteins of heart and skeletal muscle cells.