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Richard Stephen Hanson grad student 1977 UW Madison (ID Tree)
 (The Regulation of C-1 Metabolism in Methylobacterium Organophilum.)
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He L, Groom JD, Wilson EH, et al. (2023) A methanotrophic bacterium to enable methane removal for climate mitigation. Proceedings of the National Academy of Sciences of the United States of America. 120: e2310046120
Groom JD, Ford SM, Pesesky MW, et al. (2019) A mutagenic screen identifies a TonB-dependent receptor required for the lanthanide metal switch in the Type I methanotroph "" 5GB1C. Journal of Bacteriology
Fu Y, He L, Reeve J, et al. (2019) Core Metabolism Shifts during Growth on Methanol versus Methane in the Methanotroph 5GB1. Mbio. 10
Puri AW, Liu D, Schaefer AL, et al. (2019) Interspecies chemical signaling in a methane-oxidizing bacterial community. Applied and Environmental Microbiology
Puri AW, Mevers E, Ramadhar TR, et al. (2018) Tundrenone: An Atypical Secondary Metabolite from Bacteria with Highly Restricted Primary Metabolism. Journal of the American Chemical Society
Gilman A, Fu Y, Hendershott M, et al. (2017) Oxygen-limited metabolism in the methanotroph Methylomicrobium buryatense 5GB1C. Peerj. 5: e3945
Fu Y, Li Y, Lidstrom M. (2017) The oxidative TCA cycle operates during methanotrophic growth of the Type I methanotroph Methylomicrobium buryatense 5GB1. Metabolic Engineering
Krause SM, Johnson T, Samadhi Karunaratne Y, et al. (2016) Lanthanide-dependent cross-feeding of methane-derived carbon is linked by microbial community interactions. Proceedings of the National Academy of Sciences of the United States of America
Puri AW, Schaefer AL, Fu Y, et al. (2016) QUORUM SENSING IN A METHANE-OXIDIZING BACTERIUM. Journal of Bacteriology
Chu F, Beck DA, Lidstrom ME. (2016) MxaY regulates the lanthanide-mediated methanol dehydrogenase switch in Methylomicrobium buryatense. Peerj. 4: e2435
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