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首页> 外文期刊>ACS Omega >cis-9-Hexadecenal, a Natural Compound Targeting Cell Wall Organization, Critical Growth Factor, and Virulence of Aspergillus fumigatus
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cis-9-Hexadecenal, a Natural Compound Targeting Cell Wall Organization, Critical Growth Factor, and Virulence of Aspergillus fumigatus

机译:CIS-9-十六六角,一种靶向细胞壁组织的天然化合物,临界生长因子和Aspergillus fumigatus的毒力

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Aspergillus fumigatus causes several nosocomial pulmonary infections and accounts for high morbidity and mortality rate globally. Among various virulence factors, 1,8-dihydroxynaphthalene-melanin plays an important role in the survival during unfavorable conditions both in vivo and in vitro , masks various molecular patterns associated with A. fumigatus, and protects it from the host immune system. In the present study, we aim to understand the potential of cis -9-hexadecenal as an antimelanogenic compound and its role in modulating other associated virulence factors in A. fumigatus . cis -9-Hexadecenal is a bioactive compound that belongs to C_(16) mono-unsaturated fatty-aldehyde groups. Minimum effective concentration of cis -9-hexadecenal affecting A. fumigatus melanin biosynthesis was determined using broth microdilution method. The spectrophotometric analysis revealed reduced melanin content (91%) and hydrophobicity (59%) at 0.293 mM of cis -9-hexadecenal. Cell surface organizational changes using electron microscopy showed altered demelanized smooth A. fumigatus conidial surface without any protrusions after cis -9-hexadecenal treatment. The transcript analysis of polyketide synthase (PKS) pksP /alb1 gene was quantified through qRT-PCR which revealed an upregulated expression. Total proteome profiling conducted through LC-MS-MS showed upregulated PKS enzyme but other downstream proteins involved in the 1,8-dihydroxynaphthalene-melanin biosynthesis pathway were absent. The homology modeling of PKS using Expasy’s web server predicted that PKS is stable at varied conditions and is hydrophilic in nature. The Ramachandran plot by PROCHECK confirmed the 3-D structure of PKS to be reliable. Docking analysis using AutoDock-4.2.6 predicted the binding of cis -9-hexadecenal and PKS at Thr-264 and Ser-171 residue via hydrogen bonding at a low binding energy of ?4.95 kcal/mol.
机译:曲霉菌Fumigatus导致几种神经肺部感染,并在全球范围内占高发病率和死亡率。在各种毒力因子中,1,8-二羟基萘-Melanin-黑色素在不利的条件下在体内和中的不利条件下的存活中起重要作用,掩盖了与 a相关的各种分子模式。 Fumigatus,并从宿主免疫系统保护它。在本研究中,我们的目的是理解 CIS -9-十六进制的潜力作为抗致胰剂化合物及其在调节其他相关毒力因子中的作用。 fumigatus。 CIS -9-HexadeCenal是属于C_(16)单 - 不饱和脂肪醛基的生物活性化合物。 CIS-9-十六进制的最小有效浓度影响 a。使用肉汤微量稀释法测定Fumigatus melanin生物合成。分光光度分析显示了在0.293mm的 -9-十六级的0.293mm的疏水性(91%)和疏水性(59%)。使用电子显微镜的细胞表面组织变化显示出改变的脱模平滑。 Fumigatus结合表面没有任何突起在 CIS -9-十六级治疗后。通过QRT-PCR定量了聚酮合酶(PKS) PKSP / ALB1基因的转录物分析,其显示出上调表达。通过LC-MS-MS进行的总蛋白质组分析显示出上调的PKS酶,但涉及1,8-二羟基萘-Melanin生物合成途径的其他下游蛋白质不存在。使用Expasy的Web服务器的PKS的同源性建模预测PKS在各种情况下是稳定的,并且本质上是亲水性的。 Procheck的Ramachandran Plot确认了PKS的三维结构可靠。使用AutoDock-4.2.6的对接分析预测了通过氢键合的α4.95kcal / mol的低结合能量在Thr-264和Ser-171残基的结合。

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