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Bushin LB, Clark KA, Pelczer I, Seyedsayamdost MR. Charting an Unexplored Streptococcal Biosynthetic Landscape Reveals a Unique Peptide Cyclization Motif. J Am Chem Soc. 2018 ;140(50):17674-17684.
Bushin LB, Covington BC, Rued BE, Federle MJ, Seyedsayamdost MR. Discovery and Biosynthesis of Streptosactin, a Sactipeptide with an Alternative Topology Encoded by Commensal Bacteria in the Human Microbiome. J Am Chem Soc. 2020 ;142(38):16265-16275.
Bushin LB, Seyedsayamdost MR. Guidelines for Determining the Structures of Radical SAM Enzyme-Catalyzed Modifications in the Biosynthesis of RiPP Natural Products. Methods Enzymol. 2018 ;606:439-460.
Burton AJ, Hamza GM, Zhang AX, Muir TW. Chemical biology approaches to study histone interactors. Biochem Soc Trans. 2021 ;49(5):2431-2441.
Burton AJ, Haugbro M, Gates LA, Bagert JD, C Allis D, Muir TW. In situ chromatin interactomics using a chemical bait and trap approach. Nat Chem. 2020 ;12(6):520-527.
Burdine RD, Grimes DT. Antagonistic interactions in the zebrafish midline prior to the emergence of asymmetric gene expression are important for left-right patterning. Philos Trans R Soc Lond B Biol Sci. 2016 ;371(1710).
Buksh BF, Knutson SD, Oakley JV, Bissonnette NB, Oblinsky DG, Schwoerer MP, et al. μMap-Red: Proximity Labeling by Red Light Photocatalysis. J Am Chem Soc. 2022 ;144(14):6154-6162.
Budayeva HG, Rowland EA, Cristea IM. Intricate Roles of Mammalian Sirtuins in Defense against Viral Pathogens. J Virol. 2016 ;90(1):5-8.
Budayeva HG, Cristea IM. Human Sirtuin 2 Localization, Transient Interactions, and Impact on the Proteome Point to Its Role in Intracellular Trafficking. Mol Cell Proteomics. 2016 ;15(10):3107-3125.
Brynildsen MP. Nitric Oxide Stress as a Metabolic Flux. Adv Microb Physiol. 2018 ;73:63-76.
Brunton BW, Botvinick MM, Brody CD. Rats and humans can optimally accumulate evidence for decision-making. Science. 2013 ;340(6128):95-8.
Brown RJP, Tegtmeyer B, Sheldon J, Khera T, Todt D, Vieyres G, et al. Liver-expressed and limit hepatitis C virus cross-species transmission to mice. Sci Adv. 2020 ;6(45).
Brown JE, McBride CS, Johnson P, Ritchie S, Paupy C, Bossin H, et al. Worldwide patterns of genetic differentiation imply multiple 'domestications' of Aedes aegypti, a major vector of human diseases. Proc Biol Sci. 2011 ;278(1717):2446-54.
Brown AJ, Chua NKiat, Yan N. The shape of human squalene epoxidase expands the arsenal against cancer. Nat Commun. 2019 ;10(1):888.
Broussard GJoey, Kislin M, Jung C, Wang SS-H. A Flexible Platform for Monitoring Cerebellum-Dependent Sensory Associative Learning. J Vis Exp. 2022 ;(179).
Brose N, Brunger A, Cafiso D, Chapman ER, Diao J, Hughson FM, et al. Synaptic vesicle fusion: today and beyond. Nat Struct Mol Biol. 2019 ;26(8):663-668.
Brooks JF, Behrendt CL, Ruhn KA, Lee S, Raj P, Takahashi JS, et al. The microbiota coordinates diurnal rhythms in innate immunity with the circadian clock. Cell. 2021 ;184(16):4154-4167.e12.
Brooks JF, Hooper LV. Interactions among microbes, the immune system, and the circadian clock. Semin Immunopathol. 2020 ;42(6):697-708.
Brody CD, Hanks TD. Neural underpinnings of the evidence accumulator. Curr Opin Neurobiol. 2016 ;37:149-157.
Brody CD, Hopfield JJ. Simple networks for spike-timing-based computation, with application to olfactory processing. Neuron. 2003 ;37(5):843-52.
Bridges AA, Fei C, Bassler BL. Identification of signaling pathways, matrix-digestion enzymes, and motility components controlling biofilm dispersal. Proc Natl Acad Sci U S A. 2020 ;117(51):32639-32647.
Bridges AA, Bassler BL. Inverse regulation of biofilm dispersal by polyamine signals. Elife. 2021 ;10.
Bridges AA, Bassler BL. The intragenus and interspecies quorum-sensing autoinducers exert distinct control over Vibrio cholerae biofilm formation and dispersal. PLoS Biol. 2019 ;17(11):e3000429.
Bridges AA, Prentice JA, Fei C, Wingreen NS, Bassler BL. Quantitative input-output dynamics of a c-di-GMP signal transduction cascade in Vibrio cholerae. PLoS Biol. 2022 ;20(3):e3001585.
Bren A, Park JO, Towbin BD, Dekel E, Rabinowitz JD, Alon U. Glucose becomes one of the worst carbon sources for E.coli on poor nitrogen sources due to suboptimal levels of cAMP. Sci Rep. 2016 ;6:24834.