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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Sucrose transport into plasma membrane vesicles from tobacco leaves by H+ symport or counter exchange does not display a linear component
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Sucrose transport into plasma membrane vesicles from tobacco leaves by H+ symport or counter exchange does not display a linear component

机译:蔗糖通过H +同向转运或逆向交换从烟叶转运到质膜囊泡中不显示线性成分

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摘要

Uptake of [C-14] sucrose by plasma membrane vesicles from leaves of tobacco (Nicotiana tabacum L.) was measured after the imposition of an inwardly directed proton gradient (DeltapH = 2) and an electrical gradient (Deltapsi = -68 mV, inside negative) across the vesicle membrane. The vesicles were isolated from a microsomal fraction by two-phase partitioning using media that contained 330 mm of either sorbitol or sucrose. Sucrose transport into vesicles isolated using the sorbitol-containing media showed the hallmarks of electrogenic H+-symport, as it was highly dependent on DeltapH, could be increased three- to four-fold by A, and was abolished by carbonylcyanide m-chlorophenylhydrazone (CCCP). Transport of [C-14]sucrose into vesicles that were isolated using the sucrose-containing media apparently occurred by counter exchange. Its initial influx also depended on a low external pH, but it was insensitive to CCCP and hardly stimulated by A. Both symport and counter exchange obeyed simple Michaelis-Menten kinetics. Transport that depends linearly on the external sucrose concentration could not be detected, indicating that the 'linear' component that has been observed in sucrose uptake by leaf tissues does not represent a transport route that is provided by the sucrose symporter. The potential role of H+/sucrose-symporters in phloem unloading is briefly discussed. [References: 58]
机译:在向内施加质子梯度(DeltapH = 2)和电梯度(Deltapsi = -68 mV,内部)后,测量了烟草(Nicotiana tabacum L.)的质膜囊泡对[C-14]蔗糖的吸收阴性)跨囊泡膜。通过使用包含330mm山梨糖醇或蔗糖的培养基通过两相分配从微粒体级分中分离囊泡。使用含山梨糖醇的介质将蔗糖转运到囊泡中显示出电H +对称性的标志,因为它高度依赖于DeltapH,可被A增加三至四倍,并被羰基氰化物间氯苯hydr(CCCP)废除)。 [C-14]蔗糖运输到使用含蔗糖的培养基分离的囊泡中显然是通过反向交换发生的。它的初始流入也依赖于较低的外部pH值,但它对CCCP不敏感,几乎不受A的刺激。同向交换和反向交换均遵循简单的Michaelis-Menten动力学。无法检测到线性依赖于外部蔗糖浓度的转运,这表明在叶片组织摄入蔗糖中观察到的“线性”成分并不代表蔗糖同向转运体提供的转运途径。简要讨论了H + /蔗糖转运蛋白在韧皮部卸载中的潜在作用。 [参考:58]

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