首页> 外文期刊>Journal of the American Chemical Society >Control of Heme Coordination and Catalytic Activity by Conformational Changes in Peptide-Amphiphile Assemblies
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Control of Heme Coordination and Catalytic Activity by Conformational Changes in Peptide-Amphiphile Assemblies

机译:肽-两亲组装体构象变化控制血红素配位和催化活性。

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摘要

Self-assembling peptide materials have gained significant attention, due to well-demonstrated applications, but they are functionally underutilized. To advance their utility, we use noncovalent interactions to incorporate the biological cofactor heme-B for catalysis. Heme-proteins achieve differing functions through structural and coordinative variations. Here, we replicate this phenomenon by highlighting changes in heme reactivity as a function of coordination, sequence, and morphology (micelles versus fibers) in a series of simple peptide amphiphiles with the sequence cI6-xyL_3K_3-CO_2H where cl6 is a palmitoyl moiety and xy represents the heme binding region: AA, AH, HH, and MH. The morphology of this peptide series is characterized using transmission electron and atomic force microscopies as well as dynamic light scattering. Within this small library of peptide constructs, we show that three spectroscopically (UV/visible and electron paramagnetic resonance) distinct heme environments were generated: noncoordinated/embedded high-spin, five-coordinate high-spin, and six-coordinate low-spin. The resulting material's functional dependence on sequence and supramolecular morphology is highlighted 2-fold. First, the heme active site binds carbon monoxide in both micelles and fibers, demonstrating that the heme active site in both morphologies is accessible to small molecules for catalysis. Second, peroxidase activity was observed in heme-containing micelles yet was significantly reduced in heme-containing fibers. We briefly discuss the implications these findings have in the production of functional, self-assembling peptide materials.
机译:自组装的肽材料由于具有良好的应用前景而备受关注,但在功能上未得到充分利用。为了提高其实用性,我们使用非共价相互作用将生物辅因子血红素-B纳入催化。血红素蛋白通过结构和协调变异实现不同的功能。在这里,我们通过在一系列具有序列cI6-xyL_3K_3-CO_2H的简单肽两亲物中突出血红素反应性随配位,序列和形态(胶束与纤维)的变化来复制这种现象,其中cl6是棕榈酰基部分,xy代表血红素结合区:AA,AH,HH和MH。该肽系列的形态使用透射电子和原子力显微镜检查以及动态光散射进行表征。在这个小的肽构建体文库中,我们显示了在光谱上产生了三个光谱(UV /可见光和电子顺磁共振)不同的血红素环境:未配位/嵌入的高纺丝,五坐标高纺丝和六坐标低纺丝。所得材料对序列和超分子形态的功能依赖性突出显示为2倍。首先,血红素活性位点与胶束和纤维中的一氧化碳结合,这表明两种形态的血红素活性位点都可以被小分子催化。第二,在含血红素的胶束中观察到过氧化物酶活性,但在含血红素的纤维中明显降低。我们简要讨论了这些发现对功能性,自组装肽材料生产的影响。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第25期|8497-8507|共11页
  • 作者单位

    Argonne National Laboratory, 9700 South Cass Avenue, Argonne, Illinois 60439, United States;

    Illinois Math and Science Academy, 1500 West Sullivan Road, Aurora, Illinois 60506, United States;

    Argonne National Laboratory, 9700 South Cass Avenue, Argonne, Illinois 60439, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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