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Merck
CN
  • Path-seq identifies an essential mycolate remodeling program for mycobacterial host adaptation.

Path-seq identifies an essential mycolate remodeling program for mycobacterial host adaptation.

Molecular systems biology (2019-03-06)
Eliza Jr Peterson, Rebeca Bailo, Alissa C Rothchild, Mario L Arrieta-Ortiz, Amardeep Kaur, Min Pan, Dat Mai, Abrar A Abidi, Charlotte Cooper, Alan Aderem, Apoorva Bhatt, Nitin S Baliga
摘要

The success of Mycobacterium tuberculosis (MTB) stems from its ability to remain hidden from the immune system within macrophages. Here, we report a new technology (Path-seq) to sequence miniscule amounts of MTB transcripts within up to million-fold excess host RNA Using Path-seq and regulatory network analyses, we have discovered a novel transcriptional program for in vivo mycobacterial cell wall remodeling when the pathogen infects alveolar macrophages in mice. We have discovered that MadR transcriptionally modulates two mycolic acid desaturases desA1/desA2 to initially promote cell wall remodeling upon in vitro macrophage infection and, subsequently, reduces mycolate biosynthesis upon entering dormancy. We demonstrate that disrupting MadR program is lethal to diverse mycobacteria making this evolutionarily conserved regulator a prime antitubercular target for both early and late stages of infection.

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单克隆抗-FLAG® M2 小鼠抗, 1.0-1.2 mg/mL, clone M2, affinity isolated antibody, buffered aqueous solution (50% glycerol, 10 mM sodium phosphate, and 150 mM NaCl, pH 7.4)
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蛋白酶抑制剂混合物粉末, for general use, lyophilized powder