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1.
ACS Synth Biol ; 7(2): 328-338, 2018 02 16.
Article in English | MEDLINE | ID: mdl-29298053

ABSTRACT

With the completion of the genome sequence, and development of an efficient conjugation-based transformation system allowing the introduction of stable episomes, Phaeodactylum tricornutum has become an ideal platform for the study of diatom biology and synthetic biology applications. The development of plasmid-based genetic tools is the next step to improve manipulation of this species. Here, we report the identification of endogenous P. tricornutum promoters and terminators allowing selective expression of antibiotic resistance markers from stably replicating plasmids in P. tricornutum. Significantly, we developed a protocol for sequential conjugation of plasmids from Escherichia coli to P. tricornutum and demonstrated simultaneous replication of two plasmids in P. tricornutum. We developed a simple and robust conjugative system for Cas9 editing that yielded up to 60% editing efficiency of the urease gene. Finally, we constructed a plasmid encoding eight genes involved in vanillin biosynthesis that was propagated in P. tricornutum over four months with no evidence of rearrangements, with whole-plasmid sequencing indicating that the majority of mutations occurred after plasmid assembly and initial conjugation rather than during long-term propagation. The plasmid-based tools described here will facilitate investigation of the basic biology of P. tricornutum and enable synthetic biology applications.


Subject(s)
CRISPR-Cas Systems , Diatoms/genetics , Gene Editing , Plasmids/genetics , Synthetic Biology , Escherichia coli/genetics
2.
Sci Rep ; 7(1): 15545, 2017 Nov 14.
Article in English | MEDLINE | ID: mdl-29138462

ABSTRACT

Cystic fibrosis (CF) is characterized by recurrent airway infections with antibiotic-resistant bacteria and chronic inflammation. Chicken cathelicin-2 (CATH-2) has been shown to exhibit antimicrobial activity against antibiotic-resistant bacteria and to reduce inflammation. In addition, exogenous pulmonary surfactant has been suggested to enhance pulmonary drug delivery. It was hypothesized that CATH-2 when combined with an exogenous surfactant delivery vehicle, bovine lipid extract surfactant (BLES), would exhibit antimicrobial activity against CF-derived bacteria and downregulate inflammation. Twelve strains of CF-pathogens were exposed to BLES+CATH-2 in vitro and killing curves were obtained to determine bactericidal activity. Secondly, heat-killed bacteria were administered in vivo to elicit a pro-inflammatory response with either a co-administration or delayed administration of BLES+CATH-2 to assess the antimicrobial-independent, anti-inflammatory properties of BLES+CATH-2. CATH-2 alone exhibited potent antimicrobial activity against all clinical strains of antibiotic-resistant bacteria, while BLES+CATH-2 demonstrated a reduction, but significant antimicrobial activity against bacterial isolates. Furthermore, BLES+CATH-2 reduced inflammation in vivo when either co-administered with killed bacteria or after delayed administration. The use of a host-defense peptide combined with an exogenous surfactant compound, BLES+CATH-2, is shown to exhibit antimicrobial activity against antibiotic-resistant CF bacterial isolates and reduce inflammation.


Subject(s)
Achromobacter denitrificans/drug effects , Antimicrobial Cationic Peptides/pharmacology , Biological Products/pharmacology , Cystic Fibrosis/therapy , Pseudomonas aeruginosa/drug effects , Staphylococcus aureus/drug effects , Adult , Anti-Bacterial Agents/pharmacology , Antimicrobial Cationic Peptides/therapeutic use , Chronic Disease , Cystic Fibrosis/microbiology , Drug Resistance, Bacterial , Female , Humans , Male , Middle Aged , Pulmonary Surfactants/pharmacology , Respiratory Tract Diseases/microbiology , Surface-Active Agents/pharmacology
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