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Design and in silico analysis of a whole-cell biosensor able to kill methicillin-resistant Staphylococcus aureus

Biotechnol Appl Biochem. 2021-06; 
Diego Francisco Benítez-Chao, Francisco de Jesús Balderas-Cisneros, Angel León-Buitimea, José Rubén Morones-Ramírez
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Gene Synthesis … Codon usage bias analysis of the native type and the optimized synthetic genes. Codon optimization of all the sequences were performed with the GenSmart Codon Optimization tool (https://www.genscript.com/tools/gensmart-codon-optimization) version Beta 1.0?… Get A Quote

摘要

The rise of methicillin-resistant Staphylococcus aureus (MRSA) infections has gained concern throughout the world over the past decades. Alternative therapeutic agents to antibiotics are rapidly growing to impede the proliferation of MRSA-caused infections. Lately, synthetic biology techniques have developed whole-cell biosensors by designing gene circuitry capable of sensing quorum-sensing (QS) molecules of pathogens and triggering expression of an antimicrobial moiety that kills MRSA and therefore prevents its further proliferation. Here, an E. coli was engineered in silico to act as a whole-cell biosensor that senses QS molecules from MRSA and triggers the expression of a bacteriocin that kills MRSA. To achi... More

關鍵詞

Escherichia coli, MRSA, lacticin Q, quorum-sensing, whole-cell biosensor
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