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Engineering orthogonal signaling pathways reveals the sparse distribtion of protein protein interactions in sequence space [combinatorial_library_sort_seq]

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NIAID Data Ecosystem2026-04-25 收录
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https://www.ncbi.nlm.nih.gov/sra/SRP163239
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The cross compatibility of functional PhoQ-PhoP mutants with altered specificity residues was analyzed by sort seq. We cloned and combinatorially combined 79 PhoQ* and 71 PhoP* variants, producing a library with a theoretical diversity of 5,609. The library was then subjected to Sort-Seq, using fluorescence-activated cell sorting (FACS) and deep sequencing to quantify the signal responsiveness of variants in the library. To gauge the phosphorylation of PhoP in vivo, we used a fluorescent transcriptional reporter, PmgrB-yfp. In the presence of low extracellular Mg2+, functional PhoQ promotes the phosphorylation of PhoP and the production of YFP, whereas in the presence of high concentrations of Mg2+, PhoQ drives the dephosphorylation of PhoP, limiting the accumulation of YFP). The library was grown in each condition for 6 hours before sorting and sequencing. To identify variants that are signal responsive and drive YFP production specifically in low Mg2+, we sorted cells from each condition into 8 separate bins and deep sequenced the randomized regions of variants collected in each bin (Fig. 2b). We then calculated the frequency of each variant in each bin to yield the distributions of individual variants in low and high Mg2+, which were fit to Gaussians. From these fits, we assessed the mean level of YFP in each condition and the fold-induction, or signal responsiveness, of each variant detected in the library. The 11 codons / amino acids listed in this dataset refer to codons 12, 14, 15, 18, and 19 in PhoP and codons 284, 288, 289, 292, 302, and 303 in PhoQ, in that order. Overall design: Compatability of PhoQ and PhoP variants were analyzed by deep sequenceing bins sorted by fluorescence under different Mg2+ conditions
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2019-11-05
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