Modesto E, Lampe P D, Ribeiro M C, Spray D C, Campos de Carvalho A C
Instituto de Biofisica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
J Membr Biol. 1996 Dec;154(3):239-49. doi: 10.1007/s002329900148.
Membrane fractions highly enriched in chicken lens MIP (MIP28) were found to form ion channels when incorporated into planar lipid bilayers. The channels displayed prominent unitary conductances of about 60 and 290 pS in symmetric 150 mm KCl solution and were slightly anion selective. For both depolarizing and hyperpolarizing voltages, voltage sensitivity of the MIP28-induced conductance could be fit by a Boltzmann relation, symmetric around zero mV, with V0 = 18.5 mV, n = 4.5 and gmin/gmax = 0.17. Channel properties were not appreciably altered by pH in the range of 5.8 to 7, although channel incorporation was observed to occur more frequently at lower pH values. Calcium, at millimolar concentrations, decreased the channel mean open time. Partial proteolysis of MIP28 to yield MIP21 did not appreciably affect single-channel conductance or voltage sensitivity of the reconstituted channels. MIP28 was not phosphorylated by cAMP dependent protein kinase (PKA). Although unitary conductance and selectivity of the chicken MIP channel are similar to those reported for the bovine MIP (MIP26), the voltage sensitivity of MIP28 was higher than that of the bovine homologue, and voltage sensitivity of MIP28 was not modulated by treatments previously shown to affect MIP26 voltage gating (partial proteolysis and protein phosphorylation by PKA: (Ehring et al., 1990). The existence of such strikingly different functional properties in highly homologous channel isoforms may provide a useful system for exploration of the structure-function relations of MIP channels.
当掺入平面脂质双分子层时,发现高度富集鸡晶状体MIP(MIP28)的膜组分可形成离子通道。在对称的150 mM KCl溶液中,这些通道显示出约60和290 pS的显著单位电导,并且对阴离子有轻微选择性。对于去极化和超极化电压,MIP28诱导的电导的电压敏感性都可以用玻尔兹曼关系拟合,该关系以零mV为中心对称,V0 = 18.5 mV,n = 4.5,gmin/gmax = 0.17。在5.8至7的pH范围内,通道特性没有明显改变,尽管观察到在较低pH值下通道掺入更频繁。毫摩尔浓度的钙会减少通道的平均开放时间。将MIP28部分蛋白酶解产生MIP21并没有明显影响重组通道的单通道电导或电压敏感性。MIP28不会被cAMP依赖性蛋白激酶(PKA)磷酸化。尽管鸡MIP通道的单位电导和选择性与报道的牛MIP(MIP26)相似,但MIP28的电压敏感性高于牛同源物,并且MIP28的电压敏感性不受先前显示会影响MIP26电压门控的处理(部分蛋白酶解和PKA蛋白磷酸化:(Ehring等人,1990))的调节。在高度同源的通道亚型中存在如此显著不同的功能特性,可能为探索MIP通道的结构 - 功能关系提供一个有用的系统。