@article{199061, keywords = {Bacterial Proteins, Biological Transport, Membrane Transport Proteins, Escherichia coli Proteins, Protein Sorting Signals, Adenosine Triphosphatases, Bacterial Outer Membrane Proteins, SEC Translocation Channels, Protein Precursors, SecA Proteins}, author = {van der Wolk and Fekkes and Boorsma and Huie and Silhavy and Driessen}, title = {PrlA4 prevents the rejection of signal sequence defective preproteins by stabilizing the SecA-SecY interaction during the initiation of translocation}, abstract = {

In Escherichia coli, precursor proteins are translocated across the cytoplasmic membrane by translocase. This multisubunit enzyme consists of a preprotein-binding and ATPase domain, SecA, and the SecYEG complex as the integral membrane domain. PrlA4 is a mutant of SecY that enables the translocation of preproteins with a defective, or missing, signal sequence. Inner membranes of the prlA4 strain efficiently translocate Delta8proOmpA, a proOmpA derivative with a non-functional signal sequence. Owing to the signal sequence mutation, Delta8proOmpA binds to the translocase with a lowered affinity and the recognition is not restored by the prlA4 SecY. At the ATP-dependent initiation of translocation, the binding affinity of SecA for SecYEG is lowered causing the premature loss of bound preproteins from the translocase. The prlA4 membranes, however, bind SecA with a much higher affinity than the wild-type, and during initiation, the SecA and preprotein remain bound at the translocation site allowing an improved efficiency of translocation. It is concluded that the prlA4 strain prevents the rejection of defective preproteins from the export pathway by stabilizing SecA at the SecYEG complex.

}, year = {1998}, journal = {EMBO J}, volume = {17}, pages = {3631-9}, month = {07/1998}, issn = {0261-4189}, doi = {10.1093/emboj/17.13.3631}, language = {eng}, }