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首页> 外文期刊>Journal of Molecular Biology >An amphipathic alpha-helix at a membrane interface: a structural study using a novel X-ray diffraction method.
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An amphipathic alpha-helix at a membrane interface: a structural study using a novel X-ray diffraction method.

机译:膜界面的两亲性α-螺旋:使用新型X射线衍射方法的结构研究。

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The amphipathic alpha-helix is a recurrent feature of membrane-active proteins, peptides, and toxins. Despite extensive biophysical studies, the structural details of its affinity for membrane interfaces remain rather vague. We report here the first results of an effort to obtain detailed structural information about alpha-helices in membranes by means of a novel X-ray diffraction method. Specifically, we determined the transbilayer position and orientation of an archetypal class A amphipathic helical peptide in oriented fluid-state dioleoylphosphatidylcholine (DOPC) bilayers. The peptide, Ac-18A-NH2(Ac-DWLKAFYDKVAEKLKEAF-NH2), is a model for class A amphipathic helices of apolipoprotein A-I and other exchangeable lipoproteins. The diffraction method relies upon experimental determinations of absolute scattering-length density profiles along the bilayer normal and the transbilayer distribution of the DOPC double bonds by means of specific bromination, and molecular modeling of the perturbed lipid bilayer (derived using the transbilayer distribution of the double bonds) and the peptide. The diffraction results showed that Ac-18A-NH2was located in the bilayer interface and that its transbilayer distribution could be described by a Gaussian function with a 1/e-halfwidth of 4.5(+/-0.3) A located 17.1(+/-0.3) A from the bilayer center, close to the glycerol moiety. Molecular modeling suggested that Ac-18A-NH2is helical and oriented generally parallel with the bilayer plane. The helicity and orientation were confirmed by oriented circular dichroism measurements. The width of the Gaussian distribution, a measure of the diameter of the helix, indicated that the Ac-18A-NH2helix penetrated the hydrocarbon core to about the level of the DOPC double bonds. Bilayer perturbations caused by Ac-18A-NH2were surprisingly modest, consisting of a slight decrease in bilayer thickness with a concomitant shift of the double-bond distribution toward the bilayer center, as expected from a small increase in lipid-specific area caused by the peptide. Copyright 1999 Academic Press.
机译:两亲性α-螺旋是膜活性蛋白,肽和毒素的复发特征。尽管进行了广泛的生物物理研究,但其对膜界面的亲和力的结构细节仍然很模糊。我们在这里报告通过新颖的X射线衍射方法获得有关膜中的α螺旋的详细结构信息的努力的第一个结果。具体来说,我们确定了双向A类两亲性螺旋肽在定向流体状态的二油酰基磷脂酰胆碱(DOPC)双层中的跨双层位置和方向。肽Ac-18A-NH2(Ac-DWLKAFYDKVAEKLKEAF-NH2)是载脂蛋白A-1和其他可交换脂蛋白A类两亲螺旋的模型。衍射方法依赖于实验确定的沿双层法线的绝对散射长度密度分布图以及通过特定溴化作用的DOPC双键的跨双层分布,以及扰动的脂质双层的分子模型(使用双层的跨双层分布得出)键)和肽。衍射结果表明,Ac-18A-NH2位于双层界面,其跨双层分布可通过高斯函数描述,其1 / e半宽为4.5(+/- 0.3)A位于17.1(+/- 0.3) )从双层中心开始,靠近甘油部分。分子建模表明,Ac-18A-NH2是螺旋形的,并且通常与双层平面平行。通过定向的圆二色性测量来确认螺旋度和定向。高斯分布的宽度是螺旋线直径的度量,表明Ac-18A-NH2螺旋线穿透烃核达到大约DOPC双键的水平。 Ac-18A-NH2引起的双层扰动出乎意料地适度,包括双层厚度的略微减小以及双键分布向双层中心的伴随偏移,这是由肽引起的脂质比面积的小幅增加所预期的。版权所有1999,学术出版社。

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