SecA: Difference between revisions
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==Expression of the ''Bacillus subtilis'' secA Gene== | ==Expression of the ''Bacillus subtilis'' secA Gene== | ||
In ''Bacillus subtilis'', the secretion of extracellular proteins strongly increases upon transition from exponential growth to the stationary growth phase. It is not known whether the amounts of some or all components of the protein translocation apparatus are concomitantly increased in relation to the increased export activity. In this study, we analyzed the transcriptional organization and temporal expression of the secA gene, encoding a central component of the ''B. subtilis'' preprotein translocase. We found that secA and the downstream gene (prfB) constitute an operon that is transcribed from a vegetative (A-dependent) promoter located upstream of secA. Furthermore, using different independent methods, we found that secA expression occurred mainly in the exponential growth phase, reaching a maximal value almost precisely at the transition from exponential growth to the stationary growth phase. Following to this maximum, the de novo transcription of secA sharply decreased to a low basal level. Since at the time of maximal secA transcription the secretion activity of ''B. subtilis'' strongly increases, our results clearly demonstrate that the expression of at least one of the central components of the ''B. subtilis'' protein export apparatus is adapted to the increased demand for protein secretion. Possible mechanistic consequences are discussed.<ref name=journal3>PMID:9882663</ref> | In ''Bacillus subtilis'', the secretion of extracellular proteins strongly increases upon transition from exponential growth to the stationary growth phase. It is not known whether the amounts of some or all components of the protein translocation apparatus are concomitantly increased in relation to the increased export activity. In this study, we analyzed the transcriptional organization and temporal expression of the secA gene, encoding a central component of the ''B. subtilis'' preprotein translocase. We found that secA and the downstream gene (prfB) constitute an operon that is transcribed from a vegetative (A-dependent) promoter located upstream of secA. Furthermore, using different independent methods, we found that secA expression occurred mainly in the exponential growth phase, reaching a maximal value almost precisely at the transition from exponential growth to the stationary growth phase. Following to this maximum, the de novo transcription of secA sharply decreased to a low basal level. Since at the time of maximal secA transcription the secretion activity of ''B. subtilis'' strongly increases, our results clearly demonstrate that the expression of at least one of the central components of the ''B. subtilis'' protein export apparatus is adapted to the increased demand for protein secretion. Possible mechanistic consequences are discussed.<ref name=journal3>PMID:9882663</ref> | ||
==3D structures of SecA== | |||
[[3iqm]], [[3iqy]] – BsSecA (mutant) – Bacillus subtilis<br /> | |||
[[2ibm]], [[1tf5]], [[1m6n]] - BsSecA<br /> | |||
[[3bxz]] - EcSecA (mutant) – Escherichia coli<br /> | |||
[[2fsf]] – EcSecA<br /> | |||
[[1tm6]], [[1sx0]], [[1sx1]] – EcSecA zinc-binding domain - NMR<br /> | |||
[[3jux]] – TmSecA – Thermotoga maritima<br /> | |||
[[2ipc]] – SecA – Thermus thermophilus<br /> | |||
[[1nl3]] – MtSecA – Mycobacterium tuberculosis | |||
===SecA complexes=== | |||
[[3jv2]] – BsSecA + peptide <br /> | |||
[[1tf2]], [[1m74]] - BsSecA + ADP <BR /> | |||
[[3dl8]] – BsSecA + AaSecY + AaSecE + AaSecG – Aquifex aeolicus<br /> | |||
[[3din]] - TmSecA + TmSecY + TmSecE + TmSecG<br /> | |||
[[1ozb]] - SecA + SecB – Haemophilus influenzae<br /> | |||
[[2vda]] – EcSecA + maltoporin signal peptide <br /> | |||
[[2fsg]] - EcSecA + ATP <BR /> | |||
[[2fsi]] - EcSecA + ADP <BR /> | |||
[[2fsh]] - EcSecA + AMPPNP <BR /> | |||
[[1nkt]] - MtSecA + ADP <BR /> | |||
=References= | =References= | ||
<references/> | <references/> | ||