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Involvement of SecDF and YidC in the membrane insertion of M13 procoat mutants
Minyong Chen1, Kun Xie, Jijun Yuan
1Department of Chemistry, The Ohio State University, Columbus, Ohio 43210, USA.
Abstract:
The M13 phage Procoat protein is one of the best characterized substrates for the novel YidC pathway. It inserts into the membrane independent of the SecYEG complex but requires the 60 kDa YidC protein. Mutant Procoat proteins with alterations in the periplasmic region had been found to require SecYEG and YidC. In this report, we show that the membrane insertion of these mutants also strongly depends on SecDF that bridges SecYEG to YidC. In a cold-sensitive mutant of YidC, the Sec-dependent function of YidC is strongly impaired. We find that specifically the SecDF-dependent mutants are inhibited in the cold-sensitive YidC strain. Finally, we find that subtle changes in the periplasmic loop such as the number and location of negatively charged residues and the length of the periplasmic loop can make the Procoat strictly Sec-dependent. In addition, we successfully converted Sec-independent Pf3 coat into a Sec-dependent protein by changing the location of a negatively charged residue in the periplasmic tail. Protease mapping of Pf3 coat shows that the insertion-arrested proteins that accumulate in the YidC- or in the SecDF-deficient strains are not translocated. Taken together, the data suggest that the Sec-dependent mutants insert at the interface of YidC and the translocon with SecDF assisting in the translocation step in vivo.
Insights
The YidC pathway
Area of Science:
- Membrane protein insertion
- Bacterial protein translocation
- Molecular machinery
Background:
- The YidC pathway is a novel mechanism for membrane protein insertion.
- M13 phage Procoat protein is a well-studied substrate for YidC.
- Some Procoat mutants require both SecYEG and YidC for membrane insertion.
Purpose of the Study:
- Investigate the role of SecDF in the YidC pathway.
- Determine how periplasmic alterations affect Procoat insertion.
- Characterize the Sec-dependent and Sec-independent functions of YidC.
Main Methods:
- Analysis of mutant Procoat proteins in YidC and SecDF-deficient strains.
- Utilizing a cold-sensitive YidC mutant.
- Protease mapping to assess protein translocation.
- Site-directed mutagenesis of Pf3 coat protein.
Main Results:
- SecDF is crucial for the membrane insertion of certain Procoat mutants.
- SecDF-dependent mutants are impaired in cold-sensitive YidC strains.
- Periplasmic loop modifications can render Procoat strictly Sec-dependent.
- Pf3 coat protein was converted from Sec-independent to Sec-dependent.
Conclusions:
- SecDF acts as a bridge between SecYEG and YidC in protein translocation.
- Periplasmic loop characteristics dictate the Sec-dependence of Procoat insertion.
- Sec-dependent mutants likely insert at the YidC-translocon interface, with SecDF aiding translocation.
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