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关于五肽KIFMK引起的钠通道失活门肽二级结构变化的1H核磁共振和圆二色光谱研究。

1H-NMR and circular dichroism spectroscopic studies on changes in secondary structures of the sodium channel inactivation gate peptides as caused by the pentapeptide KIFMK.

作者信息

Kuroda Y, Maeda Y, Miyamoto K, Tanaka K, Kanaori K, Otaka A, Fujii N, Nakagawa T

机构信息

Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Biophys J. 1999 Sep;77(3):1363-73. doi: 10.1016/S0006-3495(99)76985-7.

Abstract

The pentapeptide KIFMK, which contains three clustered hydrophobic amino acid residues of isoleucine, phenylalanine, and methionine (IFM) in the sodium channel inactivation gate on the cytoplasmic linker between domains III and IV (III-IV linker), is known to restore fast inactivation to the mutant sodium channels having a defective inactivation gate or to accelerate the inactivation of the wild-type sodium channels. To investigate the docking site of KIFMK and to clarify the mechanisms for restoring the fast inactivation, we have studied the interactions between KIFMK and the fragment peptide in the III-IV linker GGQDIFMTEEQK (MP-1A; G1484-K1495 in rat brain IIA) by one- and two-dimensional (1)H-NMR and circular dichroism (CD) spectroscopies. KIFMK was found to increase the helical content of MP-1A in 80% trifluoroethanol (TFE) solution by approximately 11%. A pentapeptide, KIFMT, which can restore inactivation but less effectively than KIFMK, also increased the helical content of MP-1A, but to a lesser extent ( approximately 6%) than did KIFMK. In contrast, KDIFMTK, which is ineffective in restoring inactivation, decreased the helical content ( approximately -4%). Furthermore, we studied the interactions between KIFMK and modified peptides from MP-1A, that is, MP-1NA (D1487N), MP-1QEA (E1492Q), or MP-1EQA (E1493Q). The KIFMK was found to increase the helical content of MP-1EQA to an extent nearly identical to that of MP-1A, whereas it was found to decrease those of MP-1NA and MP-1QEA. These findings mean that KIFMK, by allowing each of the Lys residues to interact with D1487 and E1492, respectively, stabilized the helical structure of the III-IV linker around the IFM residues. This helix-stabilizing effect of KIFMK on the III-IV linker may restore and/or accelerate fast inactivation to the sodium channels having a defective inactivation gate or to wild-type sodium channels.

摘要

五肽KIFMK在结构域III和IV之间的细胞质连接子(III-IV连接子)上的钠通道失活门中含有三个成簇的疏水氨基酸残基异亮氨酸、苯丙氨酸和甲硫氨酸(IFM),已知它能使失活门有缺陷的突变型钠通道恢复快速失活,或加速野生型钠通道的失活。为了研究KIFMK的对接位点并阐明恢复快速失活的机制,我们通过一维和二维(1)H-NMR以及圆二色性(CD)光谱研究了KIFMK与III-IV连接子中的片段肽GGQDIFMTEEQK(MP-1A;大鼠脑IIA中的G1484-K1495)之间的相互作用。发现KIFMK在80%三氟乙醇(TFE)溶液中使MP-1A的螺旋含量增加了约11%。一种能恢复失活但效果不如KIFMK的五肽KIFMT,也增加了MP-1A的螺旋含量,但增幅比KIFMK小(约6%)。相比之下,在恢复失活方面无效的KDIFMTK降低了螺旋含量(约-4%)。此外,我们研究了KIFMK与MP-1A的修饰肽之间的相互作用,即MP-1NA(D1487N)、MP-1QEA(E1492Q)或MP-1EQA(E1493Q)。发现KIFMK使MP-1EQA的螺旋含量增加到与MP-1A几乎相同的程度,而发现它降低了MP-1NA和MP-1QEA的螺旋含量。这些发现意味着KIFMK通过让每个赖氨酸残基分别与D1487和E1492相互作用,稳定了IFM残基周围III-IV连接子的螺旋结构。KIFMK对III-IV连接子的这种螺旋稳定作用可能会使失活门有缺陷的钠通道或野生型钠通道恢复和/或加速快速失活。

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