Structural study and antimicrobial and wound healing effects of lectin from Solieria filiformis (Kützing) P.W.Gabrielson

IF 3.3 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochimie Pub Date : 2023-11-01 DOI:10.1016/j.biochi.2023.05.016
Renata Pinheiro Chaves , Ana Kátia Barbosa dos Santos , Alexandre Lopes Andrade , Aryane de Azevedo Pinheiro , Juliana Meneses de Sena Silva , Francisca Manuela Santos da Silva , Jucilene Pereira de Sousa , Ito Liberato Barroso Neto , Eduardo Henrique Salviano Bezerra , Jade Oliveira Abreu , Fátima Cristiane Teles de Carvalho , Oscarina Viana de Sousa , Bruno Lopes de Sousa , Bruno Anderson Matias da Rocha , André Luis Coelho Silva , Luiz Gonzaga do Nascimento Neto , Mayron Alves de Vasconcelos , Edson Holanda Teixeira , Rômulo Farias Carneiro , Alexandre Holanda Sampaio , Celso Shiniti Nagano
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Abstract

The SfL-1 isoform from the marine red algae Solieria filiformis was produced in recombinant form (rSfL-1) and showed hemagglutinating activity and inhibition similar to native SfL. The analysis of circular dichroism revealed the predominance of β-strands structures with spectra of βI-proteins for both lectins, which had Melting Temperature (Tm) between 41 °C and 53 °C. The three-dimensional structure of the rSfL-1 was determined by X-ray crystallography, revealing that it is composed of two β-barrel domains formed by five antiparallel β chains linked by a short peptide between the β-barrels. SfL and rSfL-1 were able to agglutinate strains of Escherichia coli and Staphylococcus aureus and did not show antibacterial activity. However, SfL induced a reduction in E. coli biomass at concentrations from 250 to 125 μg mL−1, whereas rSfL-1 induced reduction in all concentrations tested. Additionally, rSfL-1 at concentrations from 250 to 62.5 μg mL−1, showed a statistically significant reduction in the number of colony-forming units, which was not noticed for SfL. Wound healing assay showed that the treatments with SfL and rSfL-1 act in reducing the inflammatory response and in the activation and proliferation of fibroblasts by a larger and fast deposition of collagen.

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丝状梭菌凝集素的结构研究及其抗菌和伤口愈合作用。
海洋红藻Solieria filiformis的SfL-1亚型以重组形式(rSfL-1)产生,并显示出类似于天然SfL的血凝活性和抑制作用。圆二色性分析揭示了两种凝集素的β-链结构和βI-蛋白谱的优势,其熔融温度(Tm)在41°C至53°C之间。通过X射线晶体学测定了rSfL-1的三维结构,揭示了它由两个β-桶结构域组成,这两个结构域由五个反平行的β链形成,β-桶之间由一个短肽连接。SfL和rSfL-1能凝集大肠杆菌和金黄色葡萄球菌,但不显示抗菌活性。然而,SfL在250至125μg mL-1的浓度下诱导大肠杆菌生物量减少,而rSfL-1在所有测试浓度下诱导减少。此外,浓度为250至62.5μg mL-1的rSfL-1显示出集落形成单位数量的统计学显著减少,而SfL没有注意到这一点。伤口愈合测定显示,SfL和rSfL-1的治疗通过更大且快速的胶原沉积降低了炎症反应以及成纤维细胞的活化和增殖。
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来源期刊
Biochimie
Biochimie 生物-生化与分子生物学
CiteScore
7.20
自引率
2.60%
发文量
219
审稿时长
40 days
期刊介绍: Biochimie publishes original research articles, short communications, review articles, graphical reviews, mini-reviews, and hypotheses in the broad areas of biology, including biochemistry, enzymology, molecular and cell biology, metabolic regulation, genetics, immunology, microbiology, structural biology, genomics, proteomics, and molecular mechanisms of disease. Biochimie publishes exclusively in English. Articles are subject to peer review, and must satisfy the requirements of originality, high scientific integrity and general interest to a broad range of readers. Submissions that are judged to be of sound scientific and technical quality but do not fully satisfy the requirements for publication in Biochimie may benefit from a transfer service to a more suitable journal within the same subject area.
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