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MurJ is the flippase of lipid-linked precursors for peptidoglycan  biogenesis | Science
MurJ is the flippase of lipid-linked precursors for peptidoglycan biogenesis | Science

PDB 5t77 structure summary ‹ Protein Data Bank in Europe (PDBe) ‹ EMBL-EBI
PDB 5t77 structure summary ‹ Protein Data Bank in Europe (PDBe) ‹ EMBL-EBI

Effect of protease (trypsin) on the flippase activity of spinach ER... |  Download Scientific Diagram
Effect of protease (trypsin) on the flippase activity of spinach ER... | Download Scientific Diagram

Structure and mutagenic analysis of the lipid II flippase MurJ from  Escherichia coli | PNAS
Structure and mutagenic analysis of the lipid II flippase MurJ from Escherichia coli | PNAS

Crystal structure of the MOP flippase MurJ in an inward-facing conformation  | Nature Structural & Molecular Biology
Crystal structure of the MOP flippase MurJ in an inward-facing conformation | Nature Structural & Molecular Biology

Wzx flippase-mediated membrane translocation of sugar polymer precursors in  bacteria. | Semantic Scholar
Wzx flippase-mediated membrane translocation of sugar polymer precursors in bacteria. | Semantic Scholar

PDB 5t77 structure summary ‹ Protein Data Bank in Europe (PDBe) ‹ EMBL-EBI
PDB 5t77 structure summary ‹ Protein Data Bank in Europe (PDBe) ‹ EMBL-EBI

Crystal structures of the Lipid II flippase MurJ TA . a Chemical... |  Download Scientific Diagram
Crystal structures of the Lipid II flippase MurJ TA . a Chemical... | Download Scientific Diagram

Genes encoding lipid II flippase MurJ and peptidoglycan hydrolases are  required for chloroplast division in the moss Physcomitrella patens |  SpringerLink
Genes encoding lipid II flippase MurJ and peptidoglycan hydrolases are required for chloroplast division in the moss Physcomitrella patens | SpringerLink

The bacterial lipid II flippase MurJ functions by an alternating-access  mechanism - ScienceDirect
The bacterial lipid II flippase MurJ functions by an alternating-access mechanism - ScienceDirect

RCSB PDB - 5T77: Crystal structure of the MOP flippase MurJ
RCSB PDB - 5T77: Crystal structure of the MOP flippase MurJ

PDF) Crystal structure of the MOP flippase MurJ in an inward-facing  conformation
PDF) Crystal structure of the MOP flippase MurJ in an inward-facing conformation

PDF] Lipid Flippases for Bacterial Peptidoglycan Biosynthesis | Semantic  Scholar
PDF] Lipid Flippases for Bacterial Peptidoglycan Biosynthesis | Semantic Scholar

Loss of specificity variants of WzxC suggest that substrate recognition is  coupled with transporter opening in MOP‐family flippases - Sham - 2018 -  Molecular Microbiology - Wiley Online Library
Loss of specificity variants of WzxC suggest that substrate recognition is coupled with transporter opening in MOP‐family flippases - Sham - 2018 - Molecular Microbiology - Wiley Online Library

Detection of Transport Intermediates in the Peptidoglycan Flippase MurJ  Identifies Residues Essential for Conformational Cycling | Journal of the  American Chemical Society
Detection of Transport Intermediates in the Peptidoglycan Flippase MurJ Identifies Residues Essential for Conformational Cycling | Journal of the American Chemical Society

Progress in Our Understanding of Wzx Flippase for Translocation of  Bacterial Membrane Lipid-Linked Oligosaccharide | Journal of Bacteriology
Progress in Our Understanding of Wzx Flippase for Translocation of Bacterial Membrane Lipid-Linked Oligosaccharide | Journal of Bacteriology

A viral protein antibiotic inhibits lipid II flippase activity | Nature  Microbiology
A viral protein antibiotic inhibits lipid II flippase activity | Nature Microbiology

Visualizing conformation transitions of the Lipid II flippase MurJ | Nature  Communications
Visualizing conformation transitions of the Lipid II flippase MurJ | Nature Communications

MurJ is the flippase of lipid-linked precursors for peptidoglycan  biogenesis | Science
MurJ is the flippase of lipid-linked precursors for peptidoglycan biogenesis | Science

A structural model of MurJ. The front view of the model structure of... |  Download Scientific Diagram
A structural model of MurJ. The front view of the model structure of... | Download Scientific Diagram

Lipid Flippases for Bacterial Peptidoglycan Biosynthesis - Natividad Ruiz,  2015
Lipid Flippases for Bacterial Peptidoglycan Biosynthesis - Natividad Ruiz, 2015

Progress in Our Understanding of Wzx Flippase for Translocation of  Bacterial Membrane Lipid-Linked Oligosaccharide. - Abstract - Europe PMC
Progress in Our Understanding of Wzx Flippase for Translocation of Bacterial Membrane Lipid-Linked Oligosaccharide. - Abstract - Europe PMC

The bacterial lipid II flippase MurJ functions by an alternating-access  mechanism - ScienceDirect
The bacterial lipid II flippase MurJ functions by an alternating-access mechanism - ScienceDirect

Crystal structure of the lipid flippase MurJ in a “squeezed” form distinct  from its inward- and outward-facing forms - ScienceDirect
Crystal structure of the lipid flippase MurJ in a “squeezed” form distinct from its inward- and outward-facing forms - ScienceDirect

PDB 5t77 structure summary ‹ Protein Data Bank in Europe (PDBe) ‹ EMBL-EBI
PDB 5t77 structure summary ‹ Protein Data Bank in Europe (PDBe) ‹ EMBL-EBI

The bacterial lipid II flippase MurJ functions by an alternating-access  mechanism - ScienceDirect
The bacterial lipid II flippase MurJ functions by an alternating-access mechanism - ScienceDirect

Loss of specificity variants of WzxC suggest that substrate recognition is  coupled with transporter opening in MOP‐family flippases - Sham - 2018 -  Molecular Microbiology - Wiley Online Library
Loss of specificity variants of WzxC suggest that substrate recognition is coupled with transporter opening in MOP‐family flippases - Sham - 2018 - Molecular Microbiology - Wiley Online Library

Detection of Transport Intermediates in the Peptidoglycan Flippase MurJ  Identifies Residues Essential for Conformational Cycling | Journal of the  American Chemical Society
Detection of Transport Intermediates in the Peptidoglycan Flippase MurJ Identifies Residues Essential for Conformational Cycling | Journal of the American Chemical Society