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The article is mainly devoted to such representatives of gut microbiota as lactic acid bacteria and bifidobacteria, with minor accent on less frequently used or new probiotic microorganisms. Positive effects in treatment and prevention of diseases by different microbial groups, their metabolites and mechanisms of action, management and market of probiotic products are considered.  相似文献   
53.
Mating causes considerable alterations in female physiology and behaviour, and immune gene expression, partly due to proteins transferred from males to females during copulation. The magnitude of these phenotypic changes could be driven by the genotypes of males and females, as well as their interaction. To test this, we carried out a series of genotype‐by‐genotype (G × G) experiments using Drosophila melanogaster populations from two distant geographical locations. We expected lines to have diverged in male reproductive traits and females to differ in their responses to these traits. We examined female physiological and behavioural post‐mating responses to male mating traits, that is behaviour and ejaculate composition, in the short to mid‐term (48 hr) following mating. We then explored whether a sexually transferred molecule, sex peptide (SP), is the mechanism behind our observed female post‐mating responses. Our results show that the genotypes of both sexes as well as the interaction between male and female genotypes affect mating and post‐mating reproductive traits. Immune gene expression of three candidate genes increased in response to mating and was genotype‐dependent but did not show a G × G signature. Males showed genotype‐dependent SP expression in the 7 days following eclosion, but female genotypes showed no differential sensitivity to the receipt of SP. The two genotypes demonstrated clear divergence in physiological traits in short‐ to mid‐term responses to mating, but the longer‐term consequences of these initial dynamics remain to be uncovered.  相似文献   
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A novel antimicrobial peptide derived from ovalbumin has been discovered. First, the peptide fragment RKIKVYLPRMK (TK9.1) was identified based on computerized predictions of the secondary structure of peptides in a protein data bank. Using HeliQuest, the sequence was developed into RKIKRYLRRMI (TK9.1.3), which was synthesized using Fmoc‐solid phase peptide synthesis, and found to have strongly antimicrobial activity against Gram‐positive and Gram‐negative bacteria, and fungi but not cytotoxic to HeLa cells and hemolysis in mouse red blood cells. Although ovalbumin itself does not have an antibacterial activity, our results suggest that it may supply the organisms that consume it with antimicrobial peptides, in support of their immunodefence.  相似文献   
55.
Antimicrobial peptides are class of small, positively charged peptides known for their broad‐spectrum antimicrobial activity. Antimicrobial activities for most antimicrobial peptides have largely remained elusive, particularly in the lactic acid bacteria. However, recently our investigation using LPcin‐YK3, an antimicrobial peptide from bovine milk, suggests that in vitro antimicrobial activity was reduced over 100‐fold compared with pathogenic bacteria. Additionally, for the structural study of how antimicrobial peptide undergoes its reaction at the proteolytic pathway of lactic acid bacteria based on degradation assay and propidium iodide staining, we performed molecular docking for interaction between oligopeptide‐binding protein A and LPcin‐YK3 peptide. Given that degradation related to the LPcin‐YK3 peptide in lactic acid bacteria proteolytic system, the inhibitory inactivity of LPcin‐YK3 against beneficial lactic acid bacteria strains may be one of the primary pharmacological properties of recombinant peptide discovered in bovine milk. These results provide structural and functional insights into the proteolytic mechanism and possibility as a putative substrate of oligopeptide‐binding protein A in respect of LPcin‐YK3 peptide.  相似文献   
56.
Antimicrobial peptides (AMPs) appear as chemical compounds of increasing interest for their role in killing bacteria and, more recently, for their ability to bind endotoxin (lipopolysaccharide, LPS) that is released during bacterial infection and that may lead to septic shock. This dual role in the mechanism of action can further be enhanced in a synergistic way when two or more AMPs are combined together. Not all AMPs are able to bind LPS, suggesting that several modes of binding to the bacterial surface may exist. Here we analyze a natural AMP, crabrolin, and two mutated forms, one with increased positive charge (Crabrolin Plus) and the other with null charge (Crabrolin Minus), and compare their binding abilities to LPS. While Crabrolin WT as well Crabrolin Minus do not show binding to LPS, the mutated Crabrolin Plus exhibits binding and forms a well defined structure in the presence of LPS. The results strengthen the importance of positive charges for the binding to LPS and suggest the mutated form with increased positive charge as a promising candidate for antimicrobial and antiseptic activity.  相似文献   
57.
为筛选具有抗菌抗肿瘤活性的药用植物内生菌资源,该文对300余株分离自中国云南西双版纳及越南地区剑叶龙血树的内生放线菌采用琼脂块扩散法进行抗病原细菌活性筛选、平板对峙法进行抗真菌活性筛选、SRB法测定菌株的细胞毒活性及PCR扩增方法筛选非核糖体肽合成酶NRPS基因及聚酮合酶PKS-I、PKS-Ⅱ基因;对得到的优势菌株经8种培养基进行发酵,采用10种病原细菌、3种病原真菌及2种人肿瘤细胞株测试其发酵粗提物的抗菌及抗肿瘤活性以确定最佳发酵培养基;用16S rRNA基因测序方法初步鉴定5株优势菌株的分类地位。结果表明:初筛得到5株抗菌活性、体外细胞毒活性及NRPS、PKS相关基因表达阳性的菌株S01-S05,其中4株(S01-S04)属于链霉菌属、1株(S05)属于类诺卡氏菌属;菌株经不同培养基发酵后产物的抗菌和抗肿瘤活性不同,其中Streptomyces sp. S04在7种培养基中的发酵提取物对8种测试病原菌均有较强抑制作用,且该菌株用Medium C的发酵提取物对人肝癌Hep G2细胞株抑制率达到100%,为剑叶龙血树内生菌活性成分挖掘及新型抗菌药物筛选奠定了基础。  相似文献   
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【背景】禽β防御素6是禽体内分泌的一类抗菌肽,在抵抗病原入侵和免疫调节中发挥着重要作用,但其常规表达方式效率较低,难以在产业化生产中加以应用。【目的】建立稳定表达AvBD6的细胞系,并检测其表达产物对耐药大肠杆菌的抗菌活性,为其他防御素表达提供参考。【方法】利用显微镜观察构建真核重组表达载体pLOV-eGFP-AvBD6转染至293T细胞后的转染效率;收集293T细胞上清液并感染DF-1细胞,通过嘌呤霉素加压筛选稳定表达株;利用RT-PCR和Western Blot分别检测目的基因在转录水平和蛋白水平的表达情况;利用扫描电镜观察细胞培养上清液对耐药大肠杆菌的抗菌效果及其对菌体的损伤。【结果】成功构建重组表达载体pLOV-eGFP-AvBD6,筛选出稳定表达AvBD6的DF-1细胞系,而且目的基因在转录水平和蛋白水平均有表达;细胞培养上清显著降低大肠杆菌和副伤寒沙门菌存活率,对金黄色葡萄球菌的抗菌活性较低。【结论】建立了稳定表达AvBD6的DF-1细胞系,其表达产物对耐药大肠杆菌具有良好的抗菌效果,对推动防御素的应用提供技术支持。  相似文献   
60.
近年来,自组装多肽纳米技术因其可形成规则有序的结构、具有多样的功能而备受关注。研究发现自组装多肽能在特定的条件下形成具有确定结构的聚集体,这种聚集体具备生物相容性好、稳定性高等优点,表现出不同于单体多肽分子的特性和优势,因此其在药物传递、组织工程、抗菌等领域具有良好的应用前景。文中介绍了自组装多肽形成的分子机理、类型、影响因素,综述了自组装多肽形成的纤维肽基水凝胶与自组装抗菌肽的最新进展,并提出目前多肽自组装技术所存在的问题及展望。  相似文献   
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