首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >CA2+-ACTIVATED K+ CHANNELS OF HUMAN AND RABBIT ERYTHROCYTES DISPLAY DISTINCTIVE PATTERNS OF INHIBITION BY VENOM PEPTIDE TOXINS
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CA2+-ACTIVATED K+ CHANNELS OF HUMAN AND RABBIT ERYTHROCYTES DISPLAY DISTINCTIVE PATTERNS OF INHIBITION BY VENOM PEPTIDE TOXINS

机译:CA2 +激活的人和兔红细胞的K +通道显示出毒肽毒素抑制的不同模式

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摘要

Despite recent progress in the molecular characterization of high-conductance Ca2+-activated K+ (maxi-K) channels, the molecular identities of intermediate conductance Ca2+-activated K+ channels, including that of mature erythrocytes, remains unknown. We have used various peptide toxins to characterize the intermediate conductance Ca2+-activated K+ channels (Gardos pathway) of human and rabbit red cells. With studies on K+ transport and on binding of I-125-charybdotoxin (ChTX) and I-125-kaliotoxin (KTX) binding in red cells, we provide evidence for the distinct nature of the red cell Gardos channel among described Ca2+-activated K+ channels based on (i) the characteristic inhibition and binding patterns produced by ChTX analogues, iberiotoxin (IbTX) and IbTX-like ChTX mutants, and KTX (1-37 and 1-38 variants); (ii) the presence of some properties heretofore attributed only to voltage-gated channels, including inhibition of K transport by margatoxin (MgTX) and by stichodactyla toxin (StK); (iii) and the ability of scyllatoxin (ScyTX) and apamin to displace bound I-125-charybdotoxin, a novel property for K+ channels. These unusual pharmacological characteristics suggest a unique structure for the red cell Gardos channel. [References: 55]
机译:尽管最近在高电导的Ca2 +激活的K +(maxi-K)通道的分子表征方面取得了进展,但是中等电导的Ca2 +激活的K +通道(包括成熟的红细胞)的分子身份仍然未知。我们已经使用各种肽毒素来表征人和兔红细胞的中间电导Ca2 +激活的K +通道(Gardos途径)。通过对红细胞中K +转运以及I-125-软骨毒素(ChTX)和I-125-kaliotoxin(KTX)结合的研究,我们为上述Ca2 +激活的K +中红细胞Gardos通道的独特性质提供了证据。基于(i)ChTX类似物,埃博毒素(IbTX)和IbTX样ChTX突变体以及KTX(1-37和1-38变体)产生的特征性抑制和结合模式的通道; (ii)迄今存在的某些性质仅归因于电压门控通道,包括通过玛格毒素(MgTX)和棘金龟属毒素(StK)抑制钾转运; (iii)以及scyllatoxin(ScyTX)和Apapamin取代结合的I-125-软骨毒素的能力,这是K +通道的新特性。这些不寻常的药理特性表明,红细胞的Gardos通道具有独特的结构。 [参考:55]

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