Huiying Li
Affiliations: | 2004 | University of California, Los Angeles, Los Angeles, CA |
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"Huiying Li"Mean distance: 8.72 | S | N | B | C | P |
Parents
Sign in to add mentorDavid Eisenberg | grad student | 2004 | UCLA | |
(Using bioinformatic and X -ray crystallographic approaches to understand metabolism.) |
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Publications
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Barnard E, Shi B, Kang D, et al. (2016) The balance of metagenomic elements shapes the skin microbiome in acne and health. Scientific Reports. 6: 39491 |
Barnard E, Liu J, Yankova E, et al. (2016) Strains of the Propionibacterium acnes type III lineage are associated with the skin condition progressive macular hypomelanosis. Scientific Reports. 6: 31968 |
Barnard E, Li H. (2016) Shaping of cutaneous function by encounters with commensals. The Journal of Physiology |
Liu J, Yan R, Zhong Q, et al. (2015) The diversity and host interactions of Propionibacterium acnes bacteriophages on human skin. The Isme Journal |
Liu J, Cheng A, Bangayan NJ, et al. (2014) Draft Genome Sequences of Propionibacterium acnes Type Strain ATCC6919 and Antibiotic-Resistant Strain HL411PA1. Genome Announcements. 2 |
Kasimatis G, Fitz-Gibbon S, Tomida S, et al. (2013) Analysis of complete genomes of Propionibacterium acnes reveals a novel plasmid and increased pseudogenes in an acne associated strain. Biomed Research International. 2013: 918320 |
Tomida S, Nguyen L, Chiu BH, et al. (2013) Pan-genome and comparative genome analyses of propionibacterium acnes reveal its genomic diversity in the healthy and diseased human skin microbiome. Mbio. 4: e00003-13 |
Fitz-Gibbon S, Tomida S, Chiu BH, et al. (2013) Propionibacterium acnes strain populations in the human skin microbiome associated with acne. The Journal of Investigative Dermatology. 133: 2152-60 |
McDowell A, Barnard E, Nagy I, et al. (2012) An expanded multilocus sequence typing scheme for propionibacterium acnes: investigation of 'pathogenic', 'commensal' and antibiotic resistant strains. Plos One. 7: e41480 |
Grossman AR, Karpowicz SJ, Heinnickel M, et al. (2010) Phylogenomic analysis of the Chlamydomonas genome unmasks proteins potentially involved in photosynthetic function and regulation. Photosynthesis Research. 106: 3-17 |