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植物发夹样肽 EcAMP1 的合理设计:结构-功能关系揭示其抗菌和抗真菌活性。

Rational Design of Plant Hairpin-like Peptide EcAMP1: Structural-Functional Correlations to Reveal Antibacterial and Antifungal Activity.

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Natural Sciences (RAS), ul. Miklukho-Maklaya, 16/10, 117997 Moscow, Russia.

Gause Institute of New Antibiotics, ul. Bolshaya Pirogovskaya, 11, 119021 Moscow, Russia.

出版信息

Molecules. 2022 May 31;27(11):3554. doi: 10.3390/molecules27113554.

Abstract

Plant antimicrobial peptides from the α-hairpinins family (hairpin-like peptides) are known to possess a wide range of biological activities. However, less is known about the structural determinants of their antimicrobial activity. Here, we suggest that spatial structure as well as surface charge and hydrophobicity level contribute to the antimicrobial properties of α-hairpinin EcAMP1 from barnyard grass () seeds. To examine the role of the peptide spatial structure, two truncated forms of EcAMP1 restricted by inner and outer cysteine pairs were synthesized. It was shown that both truncated forms of EcAMP1 lost their antibacterial activity. In addition, their antifungal activity became weaker. To review the contribution of surface charge and hydrophobicity, another two peptides were designed. One of them carried single amino acid substitution from tryptophan to alanine residue at the 20th position. The second one represented a truncated form of the native EcAMP1 lacking six C-terminal residues. But the α-helix was kept intact. It was shown that the antifungal activity of both modified peptides weakened. Thereby we can conclude that the secondary structural integrity, hydrophobic properties, and surface charge all play roles in the antimicrobial properties of α-hairpinins. In addition, the antibacterial activity of cereal α-hairpinins against Gram-positive bacteria was described for the first time. This study expands on the knowledge of structure-function interactions in antimicrobial α-hairpinins.

摘要

植物抗菌肽 α-发夹素家族(发夹样肽)具有广泛的生物学活性。然而,关于其抗菌活性的结构决定因素知之甚少。在这里,我们提出空间结构以及表面电荷和疏水性水平有助于稗草种子中 α-发夹素 EcAMP1 的抗菌特性。为了研究肽空间结构的作用,合成了受内部和外部半胱氨酸对限制的 EcAMP1 的两种截断形式。结果表明,EcAMP1 的这两种截断形式均丧失了其抗菌活性。此外,它们的抗真菌活性也减弱了。为了研究表面电荷和疏水性的贡献,又设计了另外两种肽。其中一种在第 20 位的色氨酸残基上进行了单个氨基酸取代,变成了丙氨酸。第二种是天然 EcAMP1 的截断形式,缺少 6 个 C 末端残基,但α-螺旋保持完整。结果表明,这两种修饰肽的抗真菌活性均减弱。因此,我们可以得出结论,二级结构的完整性、疏水性和表面电荷都在α-发夹素的抗菌特性中发挥作用。此外,谷物 α-发夹素对革兰氏阳性菌的抗菌活性也是首次被描述。本研究扩展了对抗菌α-发夹素结构-功能相互作用的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cb4/9182383/87b10149ac3f/molecules-27-03554-g001.jpg

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