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  1. Linked Domain Architectures Allow for Specialization of Function in the FtsK/SpoIIIE ATPases of ESX Secretion Systems
  2. Do the same traffic rules apply? Directional chromosome segregation by SpoIIIE and FtsK
  3. The ESX System in Bacillus subtilis Mediates Protein Secretion
  4. Mechanistic Study of Classical Translocation-Dead SpoIIIE36 Reveals the Functional Importance of the Hinge within the SpoIIIE Motor
  5. Separable Roles for ATPase Domains Involved in Virulence Factor Secretion
  6. The ATPase SpoIIIE Transports DNA across Fused Septal Membranes during Sporulation in Bacillus subtilis
  7. Remodeling protein complexes: Insights from the AAA+ unfoldase ClpX and Mu transposase
  8. Sculpting the Proteome with AAA+ Proteases and Disassembly Machines
  9. Mu Transpososome Architecture Ensures that Unfolding by ClpX or Proteolysis by ClpXP Remodels but Does Not Destroy the Complex
  10. ClpX-Mediated Remodeling of Mu Transpososomes
  11. Dynamics of Substrate Denaturation and Translocation by the ClpXP Degradation Machine