首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Crystal and solution structures of a novel antimicrobial peptide from Chrysomya megacephala
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Crystal and solution structures of a novel antimicrobial peptide from Chrysomya megacephala

机译:水晶和解决方案结构的小说抗菌肽从Chrysomya油菜

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摘要

Antimicrobial peptides (AMPs) are small amphipathic peptides that exhibit bactericidal activity against a wide range of pathogenic microorganisms and are considered to be potential substitutes for antibiotics effective against microbial infection. PSK, an 84-amino-acid AMP recently isolated from Chrysomya megacephala larvae, probably belongs to the mitochondrial ATPase inhibitor family according to its sequence. No member of this family from an insect has been structurally characterized to date. In this study, the crystal structure of fulllength PSK determined by molecular replacement using an ab initio modeled ensemble as a search model and a solution structure obtained from small-angle X-ray scattering (SAXS) measurements are reported. The crystal structure reveals a distinct fold compared with those of homologous peptides, in that PSK comprises two antiparallel α-helices rather than a single long helix, which is in good agreement with the SAXS-based ab initio model. However, the peptide exists as a monomer in solution, even though a stable dimer was observed in the crystal structure. This apparent contradiction may reflect different oligomerization states that may be implicated in its bioactivity. The data presented here have established a solid basis for further mechanistic studies of this novel insect AMP.
机译:抗菌肽(安培)很小两性分子的多肽,具有杀菌活动对各种致病微生物和被认为是潜在的代替抗生素有效对抗微生物感染。最近隔绝Chrysomya油菜幼虫,可能属于线粒体根据其atp酶抑制剂家族序列。迄今为止已经在结构上的特点。这项研究中,全长的晶体结构相移键控由分子替换使用从头开始建模作为一个搜索模型和合奏一个解决方案获得小角度的结构x射线散射(粉煤灰)测量报道。独特的褶皱与同源肽,相移键控由两个反平行的α螺旋,而不是一个长螺旋是在良好的协议与SAXS-based ab吗在开头的模型。单体溶液中,即使一个稳定的二聚体观察晶体结构。明显的矛盾可能反映了不同齐聚反应可能涉及其生物活性。建立了一个坚实的基础为进一步的机械对这部小说的研究昆虫AMP。

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