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<url><loc>https://microbiology.weill.cornell.edu/nitrate-respiration-protects-hypoxic-mycobacterium-tuberculosis-against-acid-and-reactive-nitrogen</loc><lastmod>2020-12-03T20:28Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/structural-insight-serine-protease-rv3671c-protects-m-tuberculosis-oxidative-and-acidic-stress</loc><lastmod>2020-12-03T20:28Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/transformation-malaria-parasites-spontaneous-uptake-and-expression-dna-human-erythrocytes</loc><lastmod>2020-12-03T21:15Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/induction-er-stress-macrophages-tuberculosis-granulomas</loc><lastmod>2020-12-03T20:28Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/acid-resistance-mycobacterium-tuberculosis</loc><lastmod>2020-12-03T20:28Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/regulated-expression-systems-mycobacteria-and-their-applications</loc><lastmod>2020-12-03T20:29Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/regulated-expression-systems-mycobacteria-and-their-applications-0</loc><lastmod>2020-12-03T20:29Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/whole-cell-screen-inhibitors-ph-homeostasis-mycobacterium-tuberculosis</loc><lastmod>2020-12-03T20:29Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/mycobacterial-trehalose-dimycolate-reprograms-macrophage-global-gene-expression-and-activates-matrix</loc><lastmod>2020-12-03T20:29Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/m-tuberculosis-induces-potent-activation-ido-1-not-essential-immunological-control-infection</loc><lastmod>2020-12-03T20:29Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/mycobacterium-tuberculosis-gene-rv2136c-dispensable-acid-resistance-and-virulence-mice</loc><lastmod>2020-12-03T20:29Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/frequent-ectopic-recombination-virulence-factor-genes-telomeric-chromosome-clusters-p-falciparum</loc><lastmod>2020-12-03T21:15Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/construction-conditional-knockdown-mutants-mycobacteria</loc><lastmod>2020-12-03T20:31Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/identification-rv3852-agrimophol-binding-protein-mycobacterium-tuberculosis</loc><lastmod>2020-12-03T20:32Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/target-based-screen-against-periplasmic-serine-protease-regulates-intrabacterial-ph-homeostasis</loc><lastmod>2020-12-03T20:32Z</lastmod><changefreq>never</changefreq></url>
<url><loc>https://microbiology.weill.cornell.edu/disruption-m-tuberculosis-membrane-protein-causes-magnesium-dependent-cell-division-defect-and</loc><lastmod>2020-12-03T20:32Z</lastmod><changefreq>never</changefreq></url>
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