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首页> 外文期刊>Peptides: An International Journal >The new kappa-KTx 2.5 from the scorpion Opisthacanthus cayaporum.
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The new kappa-KTx 2.5 from the scorpion Opisthacanthus cayaporum.

机译:来自蝎OPisthacanthus cayaporum的新型kappa-KTx 2.5。

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The kappa-KTx family of peptides, which is the newest K-channel blocker family from scorpion venom, is present in scorpions from the families Scorpionidae and Liochelidae. Differently from the other scorpion KTx families, the three-dimensional structure of the known kappa-KTxs toxins is formed by two parallel alpha-helices linked by two disulfide bridges. Here, the characterization of a new kappa-KTx peptide, designated kappa-KTx 2.5, derived from the Liochelidae scorpion Opisthacanthus cayaporum, is described. This peptide was purified by HPLC and found to be identical to OcyC8, a predicted mature sequence precursor (UniProtKB C5J89) previously described by our group. The peptide was chemically synthesized and the circular dichroism (CD) spectra of both, native and synthetic, conducted at different temperatures in water and water/trifluoroethanol (TFE), showed a predominance of alpha-helices. The kappa-KTx 2.5 is heat stable and was shown to be a blocker of K-currents on hKv1.1, and hKv1.4, with higher affinity for Kv1.4 channels (IC= 71 muM). Similarly to the other kappa-KTxs, the blockade of K-channels occurred at micromolar concentrations, leading to uncertainness about their proper molecular target, and consequently their pharmacologic effect. In order to test other targets, kappa-KTx2.5 was tested on other K-channels, on Na-channels, on bacterial growth and on smooth muscle tissue, a known assay to identify possible bradykinin-potentiating peptides, due to the presence of two contiguous prolines at the C-terminal sequence. It has no effect on the targets used except on hKv1.1, and hKv1.4 expressed in Chinese hamster ovary cells. Since the only plausible function found for kappa-KTx2.5 seems to be the blockade of K-channels, a discussion regarding the analysis of structure-function relationships is included in this communication, based on sequence alignments of members of the kappa-KTx toxin family, and on computational simulation of a structural model of the kappa-KTx2.5-Kv1.2 complex.
机译:来自蝎毒的最新的K通道阻滞剂家族的kappa-KTx肽家族存在于蝎子科和蜥蜴科的蝎子中。与其他蝎子KTx家族不同,已知的kappa-KTxs毒素的三维结构是由两个平行的α-螺旋组成的,该螺旋由两个二硫键连接。在这里,描述了一种新的kappa-KTx肽的特性,命名为kappa-KTx 2.5,该肽衍生自Liochelidae蝎Opisthacanthus cayaporum。该肽经HPLC纯化,发现与我们小组先前描述的OcyC8相同,OcyC8是预测的成熟序列前体(UniProtKB C5J89)。该肽是化学合成的,在水和水/三氟乙醇(TFE)中的不同温度下进行的天然和合成的圆二色性(CD)光谱均显示出主要的α螺旋。 kappa-KTx 2.5具有热稳定性,并且被证明是hKv1.1和hKv1.4上的K电流的阻滞剂,对Kv1.4通道具有更高的亲和力(IC = 71μM)。与其他kappa-KTxs相似,对K通道的阻滞在微摩尔浓度下发生,从而导致对其正确的分子靶标不确定,因此对其药理作用也不确定。为了测试其他靶标,在其他K通道,Na通道,细菌生长和平滑肌组织上对kappa-KTx2.5进行了测试,这是一种已知的测定方法,用于识别可能的缓激肽增强肽,因为存在C端序列有两个连续的脯氨酸。除了对中国仓鼠卵巢细胞中表达的hKv1.1和hKv1.4以外,它对使用的靶标没有影响。由于发现kappa-KTx2.5的唯一似乎合理的功能似乎是对K通道的阻断,因此基于kappa-KTx毒素成员的序列比对,对该结构-功能关系的分析进行了讨论。家族,以及对kappa-KTx2.5-Kv1.2复合体的结构模型的计算仿真。

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