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Rr Microbiol. 2016;72(1):102?one. Vitikainen M, Lappalainen I, Seppala R, Antelmann H, Boer > 자유게시판

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Rr Microbiol. 2016;72(1):102?one. Vitikainen M, Lappalainen I, Seppala…

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Rr Microbiol. 2016;72(1):102?1. Vitikainen M, Lappalainen I, Seppala R, Antelmann H, Boer H, Taira S, Savilahti H, Hecker M, Vihinen M, Sarvas M, Kontinen VP. Structure-function assessment of PrsA reveals roles with the parvulin-like and flanking N- and C-terminal domains in protein folding and secretion in Bacillus subtilis. J Biol Chem. 2004;279:19302?4. Doerks T, Copley RR, Schultz J, Ponting CP, Bork P. A proteomic view on genome-based signal peptide predictions. Genome Res. 2001;11:1482?02. Naclerio G, Baccigalupi L, Caruso C, Felice MD, Ricca E. Bacillus subtilis vegetative catalase is really an extracellular enzyme. Appl Approximativement Microbiol. 1995;61:4471?. Wang G, Xia Y, Gu Z, Zhang H, Chen YQ, Chen H, Ai L, Chen W. A new prospective secretion pathway for recombinant proteins in Bacillus subtilis. Microb Mobile Truth. 2015;14:179. Zhu Y, Adult males Y, Bai W, Li X, Zhang L, Sunshine Y, Ma Y. Overexpression of d-psicose 3-epimerase from Ruminococcus sp. in Escherichia coli and its opportunity application in d-psicose creation. Biotechnol Lett. 2012;34:1901?. Natale P, Bruser T, Driessen AJ. Sec- and Tat-mediated protein secretion across the bacterial cytoplasmic membrane istinct translocases and mechanisms. Biochim Biophys Acta. 2008;1778:1735?6. de Keyzer J, van der Does C, Driessen AJ. The bacterial translocase: a dynamic protein channel intricate. Cell Mol Lifetime Sci. 2003;60:2034?two. Chen J, Fu G, Gai Y, Zheng P, Zhang D, Wen J. Combinatorial Sec pathway analysis for enhanced heterologous protein secretion in Bacillus subtilis: identification of bottlenecks by systematic gene overexpression. Microb Mobile Point. 2015;fourteen:92. van der Ploeg R, Monteferrante CG, Piersma S, Barnett JP, Kouwen TR, Robinson C, van Dijl JM. High-salinity expansion problems advertise Tatindependent secretion of Tat substrates in Bacillus subtilis. Appl Approximativement Microbiol. 2012;78:7733?four. Snyder AJ, Mukherjee S, Glass JK, Kearns DB, Mukhopadhyay S. The canonical twin-arginine translocase factors are not needed for secretion of folded environmentally friendly fluorescent protein within the ancestral pressure of Bacillus subtilis. Appl Approximativement Microbiol. 2014;eighty:3219?2.Chen et al. Microb Cell Point (2016) 15:Web page sixteen of29. Bhavsar AP, Zhao X, Brown ED. Improvement and characterization of a xylose-dependent technique for expression of cloned genes in Bacillus subtilis: conditional complementation of a teichoic acid mutant. Appl Approximativement Microbiol. 2001;67:403?0. 30. Tjalsma H, Bolhuis A, Jongbloed JDH, Sierd BRON, Dijl JMV. Signal peptide-dependent protein transportation in bacillus subtilis: a genomebased study of the secretome. 2000;sixty four:515?seven. 31. Jongbloed JD, Antelmann PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/16989806 H, Hecker M, Nijland R, Bron S, Airaksinen U, Pries F, Quax WJ, van Dijl JM, Braun PG. Selective contribution on the twinarginine translocation pathway to protein secretion in Bacillus subtilis. J Biol Chem. 2002;277:44068?8. 32. Kontinen VP, Saris P, Sarvas M. A gene (prsA) of Bacillus subtilis involved with a novel, late stage of protein export. Mol Microbiol. 1991;5:1273?3. 33. Kontinen VP, Sarvas M. The PrsA lipoprotein is essential for protein secretion in Bacillus subtilis and sets a restrict for WZ8040 high-level secretion. Mol Microbiol. 1993;eight:727?7. 34. Bisicchia P, Botella E, Devine KM. Suite of novel vectors for ectopic insertion of GFP, CFP and IYFP transcriptional fusions in single copy on the amyE and bglS loci in Bacillus subtilis. Plasmid. 2010;sixty four:143?. 35. Wall MA, Socolich M, Ranganathan R. The structural foundation for red fluorescence within the tetrameric.

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