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        The cytoplasmic loops of AgrC contribute to the quorum-sensing activity of Staphylococcus aureus

        Huang Qian,Xie Yihui,Yang Ziyu,Cheng Danhong,He Lei,Wang Hua,Liu Qian,Li Min 한국미생물학회 2021 The journal of microbiology Vol.59 No.1

        In Staphylococcus aureus, the accessory gene regulator (agr) quorum-sensing system is thought to play an important role in biofilm formation. The histidine kinase AgrC is one of the agr system components and activated by the self-generated auto-inducing peptide (AIP), which is released continuously into the extracellular environment during bacterial growth. The extracellular loops (Extra-loops) of AgrC are crucial for AIP binding. Here, we reported that the cytoplasmic loops (Cyto-loops) of AgrC are also involved in Agr activity. We identified S. aureus ST398 clinical isolates containing a naturally occurring single amino acid substitution (lysine to isoleucine) at position 73 of an AgrC Cyto-loop that exhibited significantly stronger biofilm formation and decreased Agr activity compared to the wild-type strain. A constructed strain containing the K73I point mutation in AgrC Cyto-loop continued to show a growth dependent induction of the agr system, although the growth dependent induction was delayed by about 6 h compared to the wild-type. In addition, a series of strains containing deletion mutants of the AgrC Cyto- and Extra-loops were constructed and revealed that the removal of the two Cyto-loops and Extra-loops 2 and 3 totally abolished the Agr activity and the growth-dependence on the agr system induction. Remarkably, the Extra-loop 1 deletion did not affect the Agr activity. In conclusion, the AgrC Cyto-loops play a crucial role in the S. aureus quorum-sensing activity.

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        LDL Coating pVEGF/polyethylenimine Complex Enhances Vascular Endothelial Growth Factor Expression

        Jian Li,Guang Yang,Min Feng,Hailong Liang,Jun Zhang,Danhong Huang,Siyun Deng,Yuan Shen 한국생물공학회 2012 Biotechnology and Bioprocess Engineering Vol.17 No.6

        The major limitations to non-viral gene delivery are relatively low efficiency and cytotoxicity, which need to be addressed in the design of new vectors. In this study,negatively charged low density lipoproteins (LDL) were coated onto positively charged pVEGF/PEI complexes to form pVEGF/PEI/LDL terplexes by a two-step procedure. The biocompatible LDL was introduced to reduce the cytotoxicity of the gene delivery system and increase its affinity to cells. The successful formation of pVEGF/PEI/LDL terplexes was confirmed by their near-neutral and slightly negative surface charges. The pVEGF/PEI/LDL terplexes were well-defined sub-micron spherical particles. On the cell viability assay, both of the PEI/LDL combined vector and pVEGF/PEI/LDL terplexes exhibited much lower cytotoxicity to HeLa cells and HUVE cells than those of PEI and pVEGF/PEI complexes, attributed to the shielding effect of the LDL. pEGFP/PEI/LDL terplexes showed significantly higher transfection efficiency in comparison to pEGFP/PEI complexes in serum-containing medium. pVEGF/PEI/LDL terplexes at their optimal N/P ratio and LDL/PEI weigh ratio induced higher expression levels of VEGF protein in HUVE cells than those of pVEGF/PEI complexes. Therefore, the pVEGF/PEI/LDL terplexes could be used as a promising gene delivery system to enhance VEGF protein expression.

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