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载脂蛋白E保守N端结构域侧链内酰胺交联肽模型中的结构-功能关系

Structure-function relationships in side chain lactam cross-linked peptide models of a conserved N-terminal domain of apolipoprotein E.

作者信息

Benzinger T L, Braddock D T, Dominguez S R, Burkoth T S, Miller-Auer H, Subramanian R M, Fless G M, Jones D N, Lynn D G, Meredith S C

机构信息

Department of Chemistry, The University of Chicago, Illinois 60637, USA.

出版信息

Biochemistry. 1998 Sep 22;37(38):13222-9. doi: 10.1021/bi980482f.

Abstract

Bioactive peptides have multiple conformations in solution but adopt well-defined conformations at lipid surfaces and in interactions with receptors. We have used side chain lactam cross-links to stabilize secondary structures in the following peptide models of a conserved N-terminal domain of apolipoprotein E (cross-link periodicity in parentheses): I, H2N-GQTLSEQVQEELLSSQVTQELRAG-COOH (none); III, [sequence; see text] (i to i + 3); IV,[sequence; see text] (i to i + 4); IVa, [sequence, see text] (i to i + 4) (lactams above the sequence, potential salt bridges below the sequence). We previously demonstrated [Luo et al. (1994) Biochemistry 33, 12367-12377; Braddock et al. (1996) Biochemistry 35, 13975-13984] that peptide III, containing lactam cross-links between the i and i + 3 side chains, enhances specific binding of LDL via a receptor other than the LDL-receptor. Peptide III in solution consists of two short alpha helices connected by a non alpha helical segment. Here we examine the hypothesis that the domain modeled by peptide III is one antipode of a conformational switch. To model another antipode of the switch, we introduced two strategic modifications into peptide III to examine structure-function relationships in this domain: (1) the spacing of the lactam cross-links was changed (i to i + 4 in peptides IV and IVa) and (2) peptides IV and IVa contain the two alternative sequences at a site of a possible end-capping interaction in peptide III. The structure of peptide IV, determined by 2D-NMR, is alpha helical across its entire length. Despite the remarkable degree of structural order, peptide IV is biologically inactive. In contrast, peptides III and possibly IVa contain a central interruption of the alpha helix, which appears necessary for biological activity. These and other studies support the hypothesis that this domain is a conformational switch which, to the extent that it models apolipoprotein E itself, may modulate interactions between apo E and its various receptors.

摘要

生物活性肽在溶液中有多种构象,但在脂质表面以及与受体相互作用时会采用明确的构象。我们利用侧链内酰胺交联来稳定载脂蛋白E保守N端结构域的以下肽模型中的二级结构(括号内为交联周期):I,H2N-GQTLSEQVQEELLSSQVTQELRAG-COOH(无);III,[序列;见正文](i至i + 3);IV,[序列;见正文](i至i + 4);IVa,[序列,见正文](i至i + 4)(序列上方为内酰胺,序列下方为潜在盐桥)。我们之前证明过[Luo等人(1994年)《生物化学》33卷,12367 - 12377页;Braddock等人(1996年)《生物化学》35卷,13975 - 13984页],含有i和i + 3侧链之间内酰胺交联的肽III通过低密度脂蛋白受体以外的受体增强低密度脂蛋白的特异性结合。溶液中的肽III由两个通过非α螺旋段连接的短α螺旋组成。在这里,我们检验这样一个假设,即由肽III模拟的结构域是构象开关的一个对映体。为了模拟开关的另一个对映体,我们对肽III进行了两个策略性修饰,以研究该结构域中的结构 - 功能关系:(1)改变内酰胺交联的间距(肽IV和IVa中为i至i + 4),(2)肽IV和IVa在肽III中可能的封端相互作用位点包含两个替代序列。通过二维核磁共振确定的肽IV的结构在其整个长度上都是α螺旋。尽管结构有序程度很高,但肽IV没有生物活性。相比之下,肽III以及可能的肽IVa在α螺旋中有一个中心中断,这似乎是生物活性所必需的。这些以及其他研究支持了这样一个假设,即该结构域是一个构象开关,就其模拟载脂蛋白E本身而言,可能调节载脂蛋白E与其各种受体之间的相互作用。

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