Balleza Daniel, Gómez-Lagunas Froylán, Sánchez Federico, Quinto Carmen
Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, UNAM, Ap. Postal 510-3, Cuernavaca, Morelos 62210, Mexico.
Arch Biochem Biophys. 2005 Jun 1;438(1):88-92. doi: 10.1016/j.abb.2005.04.007. Epub 2005 Apr 26.
A previously undescribed plasma membrane cation channel from Phaseolus vulgaris bean roots was studied after its incorporation into planar lipid bilayers. The channel allows the passage of monovalent cations excluding the flux of both anions (Cl-) and divalent cations (Ca2+). The channel presents a high ( approximately 213 pS) conductance in (300 mM Kcis+)/ (150 mMKtrans+) conditions. The probability of opening (Po) is low at all the tested voltages, but it increases significantly at trans-negative potentials. Permeability ratios (Pcation/PK+) under bi-ionic conditions follow the sequence: K+ (1.0)>NH4+ (0.86)>Na+ (0.78). Under the same conditions, the conductance ratios (gamma cation/gamma K+) follow the sequence: NH4+ (1.1) > or = K+ (1.0)>Na+ (0.80). The low probability of opening exhibited by the channel upon its incorporation into a lipid bilayer makes it a candidate to regulation by (and therefore participation in) cellular signalling networks.
将菜豆根中一种先前未描述的质膜阳离子通道整合到平面脂质双分子层中后,对其进行了研究。该通道允许单价阳离子通过,排除了阴离子(Cl-)和二价阳离子(Ca2+)的通量。在(300 mM Kcis+)/(150 mM Ktrans+)条件下,该通道呈现出高电导(约213 pS)。在所有测试电压下,通道开放概率(Po)都很低,但在跨膜负电位时显著增加。双离子条件下的通透率(Pcation/PK+)顺序为:K+(1.0)>NH4+(0.86)>Na+(0.78)。在相同条件下,电导比(gamma cation/gamma K+)顺序为:NH4+(1.1)≥K+(1.0)>Na+(0.80)。该通道整合到脂质双分子层后开放概率较低,这使其成为细胞信号网络调控(并因此参与其中)的候选对象。