2015
DOI: 10.1007/s00284-015-0919-2
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Complete Genome of a Novel Pseudoalteromonas Phage PHq0

Abstract: We isolated and purified a novel virulent Pseudoalteromonas bacteriophage PHq0 and the host bacterium Pseudoalteromonas BQ0 from seawater collected in a coastal area of the Yellow Sea of China. (36°06′N, 120°32′E). Transmission electron microscopy revealed that the phage had an icosahedral head of 50 nm in diameter with a long tail of 100 nm. The one-step growth curve showed the latent period of about 15 min, a rise period of 15 min, and a burst size of about 363 virions. The genome of phage PHq0 was found to … Show more

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Cited by 12 publications
(5 citation statements)
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“…Peptidomimetic backbone modification, including β‐peptides, peptoids, β‐peptoids, and peptide‐peptoid hybrids, has been actively investigated . These abiotic antimicrobials exhibit distinct pharmacokinetic profiles compared with natural AMPs, which could be beneficial for future clinical developments …”
Section: Improvement Strategies Of Ampsmentioning
confidence: 99%
“…Peptidomimetic backbone modification, including β‐peptides, peptoids, β‐peptoids, and peptide‐peptoid hybrids, has been actively investigated . These abiotic antimicrobials exhibit distinct pharmacokinetic profiles compared with natural AMPs, which could be beneficial for future clinical developments …”
Section: Improvement Strategies Of Ampsmentioning
confidence: 99%
“…Scytodecamide ( 1 ) features two terminal modifications. N‐methylation and C‐terminal amidation have been associated with improved membrane permeability and resistance to peptidases, respectively . The unusual structural features of 1 increased our interest in investigating its biosynthetic pathway.…”
Section: Resultsmentioning
confidence: 99%
“…These short peptides (three to five aa residues) contain N‐terminal N ‐prenylations and methylated C‐termini connected to thiazole rings . Enzymatic modifications of peptides, such as cyclizations, methylations, prenylations, epimerizations, and amidations, have been shown to increase the functional diversity of peptidic natural products …”
Section: Introductionmentioning
confidence: 99%
“…Various strategies for improving the stability of AMP‐based biomaterials have been discussed in detail in several reviews. [ 17a,143 ] The AMP‐based biomaterials with high stability may be beneficial in the treatment of these biomaterials for various bacterial infections due to their conservative antimicrobial activity. [ 31,144 ] Second, most AMP‐based biomaterial design or optimization strategies mainly take in vitro antimicrobial activity and toxicity as the primary judgment criteria, while ignoring the current in vivo biocompatibility and therapeutic potential.…”
Section: Discussionmentioning
confidence: 99%