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镧(La3+)和铝(Al3+)与小麦根质膜的结合及静电吸引作用。

Binding and electrostatic attraction of lanthanum (La3+) and aluminum (Al3+) to wheat root plasma membranes.

作者信息

Yermiyahu U, Rytwo G, Brauer D K, Kinraide T B

机构信息

Appalachian Soil and Water Conservation Research Laboratory, Agricultural Research Service, United States Department of Agriculture, Beaver, WV 25813-0400, USA.

出版信息

J Membr Biol. 1997 Oct 1;159(3):239-52. doi: 10.1007/s002329900287.

Abstract

A general model for the sorption of trivalent cations to wheat-root (Triticum aestivum L cv. Scout 66) plasma membranes (PM) has been developed and includes the first published coefficients for La3+ and Al3+ binding to a biological membrane. Both ions are rhizotoxic, and the latter ion is the principal contributor to the toxicity of acidic soils around the world. The model takes into account both the electrostatic attraction and the binding of cations to the negatively charged PM surface. Ion binding is modeled as the reaction P- + IZ <==> 'PIZ-1 in which P- represents a negatively charged PM ligand, located in an estimated area of 540 A2, and IZ represents an ion of charge Z. Binding constants for the reaction were assigned for K+ (1 M-1) and Ca2+ (30 M-1) and evaluated experimentally for La3+ (2200 M-1) and H+ (21,500 M-1). Al sorption is complicated by Al3+ hydrolysis that yields hydroxoaluminum species that are also sorbed. Binding constants of 30 and 1 M-1 were assigned for AlOH2+ and Al(OH)+2, respectively, then a constant for Al3+ (20,000 m-1) was evaluated experimentally using the previously obtained values for K+, Ca2+ and H+ binding. Electrostatic attraction was modeled according to Gouy-Chapman theory. Evaluation of parameters was based upon the sorption of ions to PM vesicles suspended in solutions containing variable concentrations of H+, Ca2+ and La3+ or Al3+. Use of small volumes, and improved assay techniques, allowed the measurement of concentration depletions caused by sorption to vesicles. Some independent confirmation of our model is provided by substantial agreement between our computations and two published reports of La3+ effects upon zeta potentials of plant protoplasts. The single published report concerning the electrostatic effects of Al on cell membranes is in essential agreement with the model.

摘要

已建立了一个三价阳离子吸附到小麦根(普通小麦品种Scout 66)质膜(PM)上的通用模型,该模型包含了首次发表的镧离子(La3+)和铝离子(Al3+)与生物膜结合的系数。这两种离子都具有根毒性,且后一种离子是全球酸性土壤毒性的主要贡献者。该模型既考虑了静电吸引作用,也考虑了阳离子与带负电的质膜表面的结合。离子结合被模拟为反应P- + IZ <==> 'PIZ-1,其中P-代表带负电的质膜配体,位于估计面积为540 Å2的区域,IZ代表电荷为Z的离子。该反应的结合常数对钾离子(K+,1 M-1)和钙离子(Ca2+,30 M-1)已确定,并对镧离子(La3+,2200 M-1)和氢离子(H+,21,500 M-1)进行了实验评估。铝的吸附因铝离子水解产生也会被吸附 的羟基铝物种而变得复杂。分别为AlOH2+和Al(OH)+2确定了30和1 M-1的结合常数,然后利用先前获得的钾离子、钙离子和氢离子结合值,通过实验评估了铝离子(Al3+,20,000 m-1)的常数。静电吸引作用根据古依-查普曼理论进行模拟。参数评估基于离子对悬浮在含有不同浓度氢离子、钙离子和镧离子或铝离子的溶液中的质膜囊泡的吸附。使用小体积溶液以及改进的测定技术,使得能够测量因吸附到囊泡上而导致的浓度降低。我们的计算结果与两篇已发表的关于镧离子对植物原生质体ζ电位影响的报告之间的实质性一致,为我们的模型提供了一些独立验证。关于铝对细胞膜静电效应的唯一一篇已发表报告与该模型基本一致。

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