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Simple model for the chemical potential change of a transported ion in active transport.

机译:主动传输中传输离子的化学势变化的简单模型。

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摘要

The mechanism for active transport of ions across a membrane probably involves two distinct conformational states of the transport protein, in which the binding sites for the transported ion face opposite sides of the membrane. It is likely that the binding affinity for the ion changes in synchrony with the change in site orientation, such that the affinity is high on the uptake side of the membrane and low on the discharge side. A structural model is proposed for the transmembrane portion of such a protein, based on the known multihelical structure of bacteriorhodopsin. This structure is well adapted to a cyclical alternation between two conformations that differ simultaneously in orientation and binding affinity. No unfolding of the helices or other significant alterations in secondary structure is required. The model is explicitly intended as a hypothetical representation of the E1 and E2 states of ATP-driven Na+,K+ and Ca2+ pumps.
机译:离子跨膜主动转运的机制可能涉及转运蛋白的两个不同构象状态,其中被转运离子的结合位点面向膜的相对侧。离子的结合亲和力可能与位点方向的变化同步地变化,使得在膜的吸收侧的亲和力高而在排出侧的亲和力低。基于细菌视紫红质的已知多螺旋结构,提出了这种蛋白质的跨膜部分的结构模型。这种结构很好地适应了两个构象之间的周期性交替,这两个构象的方向和结合亲和力不同。不需要展开螺旋结构或不需要二级结构的其他显着改变。该模型明确旨在作为ATP驱动的Na +,K +和Ca2 +泵的E1和E2状态的假设表示。

著录项

  • 作者

    Tanford, C;

  • 作者单位
  • 年度 1982
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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