Narayanaswami V, Wang J, Schieve D, Kay C M, Ryan R O
Lipid and Lipoprotein Research Group, University of Alberta, Edmonton, AB T6G 2S2, Canada.
Proc Natl Acad Sci U S A. 1999 Apr 13;96(8):4366-71. doi: 10.1073/pnas.96.8.4366.
Apolipophorin III (apoLp-III) from the sphinx moth, Manduca sexta, is a helix bundle protein that interacts reversibly with lipoproteins. Its five elongated amphipathic alpha-helices are organized in an antiparallel fashion, with helices 3 and 4 connected by a short 6-residue (PDVEKE) linker helix, termed helix 3'. Upon interaction with lipoproteins, apoLp-III opens to expose a continuous hydrophobic interior. It was postulated that helix bundle opening is preceded by an initiation step wherein helix 3' serves to recognize available lipoprotein surface binding sites. To test this hypothesis, helix 3' was replaced by residues that have a propensity to form a type I beta-turn, NPNG. This mutant apoLp-III was defective in lipoprotein binding assays. To define a more precise mode of interaction, the relevance of the presence of the hydrophobic Val-97 flanked by Asp-96 and Glu-98 was investigated by site-directed mutagenesis. V97N and D96N/V97N/E98Q apoLp-III were unable to compete with wild-type apoLp-III to initiate an interaction with lipoproteins, whereas D96N/E98Q apoLp-III was as competent as wild-type apoLp-III. The results suggest that Val-97 is critical, whereas Asp-96 and Glu-98 are irrelevant for initiating binding to lipoproteins. A model of binding is presented wherein apoLp-III is oriented with the helix 3' end of the molecule juxtaposed to the lipoprotein surface. Recognition of lipoprotein surface hydrophobic defects by Val-97 triggers opening of the helix bundle and facilitates formation of a stable binding interaction.
来自烟草天蛾(Manduca sexta)的载脂蛋白III(apoLp-III)是一种与脂蛋白可逆相互作用的螺旋束蛋白。它的五个细长的两亲性α螺旋以反平行方式排列,螺旋3和4由一个短的6个残基(PDVEKE)的连接螺旋连接,称为螺旋3'。与脂蛋白相互作用时,apoLp-III会打开以暴露连续的疏水内部。据推测,螺旋束打开之前有一个起始步骤,其中螺旋3'用于识别可用的脂蛋白表面结合位点。为了验证这一假设,将螺旋3'替换为倾向于形成I型β转角的残基NPNG。这种突变的apoLp-III在脂蛋白结合试验中存在缺陷。为了确定更精确的相互作用模式,通过定点诱变研究了由Asp-96和Glu-98侧翼的疏水Val-97存在的相关性。V97N和D96N/V97N/E98Q apoLp-III无法与野生型apoLp-III竞争以启动与脂蛋白的相互作用,而D96N/E98Q apoLp-III与野生型apoLp-III一样具有活性。结果表明,Val-97至关重要,而Asp-96和Glu-98对于启动与脂蛋白的结合无关。提出了一种结合模型,其中apoLp-III的分子螺旋3'端与脂蛋白表面并列排列。Val-97对脂蛋白表面疏水缺陷的识别触发了螺旋束的打开,并促进了稳定结合相互作用的形成。