首页> 美国卫生研究院文献>Biophysical Journal >Coexpression of alpha and beta subunits of the rod cyclic GMP-gated channel restores native sensitivity to cyclic AMP: role of D604/N1201.
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Coexpression of alpha and beta subunits of the rod cyclic GMP-gated channel restores native sensitivity to cyclic AMP: role of D604/N1201.

机译:杆状环状GMP门控通道的α和β亚基的共表达可恢复对环状AMP的天然敏感性:D604 / N1201的作用。

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摘要

Coexpression of the betawt and alphawt subunits of the bovine rod channel restores two characteristics of the native channels: higher sensitivity to cAMP and potentiation of cGMP-induced currents by low cAMP concentrations. To test whether the increased sensitivity to cAMP is due to the uncharged nature of the asparagine residue (N1201) situated in place of aspartate D604 in the beta subunit as previously suggested (, Neuron. 15:619-625), we compared currents from wild-type (alphawt and alphawt/betawt) and from mutated channels (alphaD604N, alphaD604N/betawt, and alphawt/betaN1201D). The results show that the sensitivity to cAMP and cAMP potentiation is partly but not entirely determined by the charge of residue 1201 in the beta subunit. The D604N mutation in the alpha subunit and, to a lesser extent, coexpression of the betawt subunit with the alphawt subunit reduce the open probability for cGMP compared to that of the alphawt channel. Interpretation of the data with the MWC allosteric model (model of Monod, Wyman, Changeux;, J. Mol. Biol. 12:88-118) suggests that the D604N mutation in the alpha subunits and coassembly of alpha and beta subunits alter the free energy of gating by cAMP more than that of cAMP binding.
机译:牛杆通道的betawt和alphawt亚基的共表达恢复了天然通道的两个特征:对cAMP的敏感性更高,并且cAMP的浓度较低可增强cGMP诱导的电流。为了测试对cAMP的敏感性增加是否是由于先前建议的(β)神经元中的天冬酰胺残基(N1201)取代了β亚基中的天冬氨酸D604(Neuron。15:619-625)而引起的,我们比较了野生电流-类型(alphawt和alphawt / betawt)和来自突变通道(alphaD604N,alphaD604N / betawt和alphawt / betaN1201D)。结果表明,对cAMP和cAMP增强的敏感性部分但并非完全由β亚基中残基1201的电荷决定。与αwt通道相比,α亚基中的D604N突变以及βwt亚基与αwt亚基的共表达在较小程度上降低了cGMP的开放可能性。用MWC变构模型(Monod,Wyman,Changeux模型; J。Mol。Biol。12:88-118)解释数据表明,α亚基中的D604N突变以及α和β亚基的共装配改变了游离态。 cAMP的门控能量大于cAMP结合的门控能量。

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