A hyperstable complex of the tetrameric MuA transposase with recombined DNA must be remodeled to allow subsequent DNA replication. ClpX, a AAA+ enzyme, fulfills this function by unfolding one transpososome subunit. Which MuA subunit is extracted, and how complex destabilization relates to establishment of the correct directionality (left to right) of Mu replication, is not known. Here, using altered-specificity MuA proteins/DNA sites, we demonstrate that transpososome destabilization requires preferential ClpX unfolding of either the catalytic-left or catalytic-right subunits, which make extensive intersubunit contacts in the tetramer. In contrast, ClpX recognizes the other two subunits in the tetramer much less efficiently, and their extra...
© Kim et al. AAA+ proteases perform regulated protein degradation in all kingdoms of life and consis...
In the E. coli ClpXP protease, a hexameric ClpX ring couples ATP binding and hydrolysis to mechanica...
© 2020, eLife Sciences Publications Ltd. All rights reserved. Mitochondria control the activity, qua...
AbstractThe Clp/Hsp100 ATPases are protein unfoldases that both alter protein conformation and targe...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2003.Includes bibliographi...
ATP-dependent protein remodeling and unfolding enzymes are key participants in protein metabolism in...
Thesis: Ph. D. in Biochemistry, Massachusetts Institute of Technology, Department of Biology, 2008.C...
Studies of bacteriophage Mu transposition paved the way for understanding retroviral integration and...
The hexameric AAA+ ring of Escherichia. coli ClpX, an ATP-dependent protein unfolding and translocat...
AbstractTransposition of phage Mu takes place within higher order protein-DNA complexes called trans...
To maintain protein homeostasis, AAA+ proteolytic machines degrade damaged and unneeded proteins in ...
© 2020 National Academy of Sciences. All rights reserved. ClpA is a hexameric double-ring AAA+ unfol...
textPhage Mu transposes by two distinct pathways depending on the specific stage of its life cycle. ...
AAA+ ATPase protein machines use the power obtained from ATP hydrolysis to remodel macromolecular as...
12 p.- 7 fig.-2 tab. supl. -15 fig. supl.-1 vid.Summary Transposons are ubiquitous genetic elements ...
© Kim et al. AAA+ proteases perform regulated protein degradation in all kingdoms of life and consis...
In the E. coli ClpXP protease, a hexameric ClpX ring couples ATP binding and hydrolysis to mechanica...
© 2020, eLife Sciences Publications Ltd. All rights reserved. Mitochondria control the activity, qua...
AbstractThe Clp/Hsp100 ATPases are protein unfoldases that both alter protein conformation and targe...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2003.Includes bibliographi...
ATP-dependent protein remodeling and unfolding enzymes are key participants in protein metabolism in...
Thesis: Ph. D. in Biochemistry, Massachusetts Institute of Technology, Department of Biology, 2008.C...
Studies of bacteriophage Mu transposition paved the way for understanding retroviral integration and...
The hexameric AAA+ ring of Escherichia. coli ClpX, an ATP-dependent protein unfolding and translocat...
AbstractTransposition of phage Mu takes place within higher order protein-DNA complexes called trans...
To maintain protein homeostasis, AAA+ proteolytic machines degrade damaged and unneeded proteins in ...
© 2020 National Academy of Sciences. All rights reserved. ClpA is a hexameric double-ring AAA+ unfol...
textPhage Mu transposes by two distinct pathways depending on the specific stage of its life cycle. ...
AAA+ ATPase protein machines use the power obtained from ATP hydrolysis to remodel macromolecular as...
12 p.- 7 fig.-2 tab. supl. -15 fig. supl.-1 vid.Summary Transposons are ubiquitous genetic elements ...
© Kim et al. AAA+ proteases perform regulated protein degradation in all kingdoms of life and consis...
In the E. coli ClpXP protease, a hexameric ClpX ring couples ATP binding and hydrolysis to mechanica...
© 2020, eLife Sciences Publications Ltd. All rights reserved. Mitochondria control the activity, qua...