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Общее количество найденных документов : 27
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 1-20    21-27 
1.
A new IS4 family insertion sequence, IS4Bsu1, responsible for genetic instability of poly-'гамма'-glutamic acid production in Bacillus subtilis // J. Bacteriol., 2000. Vol. 182, N 9.-С.2387-2392

2.
Itoh Activation of the progelatinase A (PROMMP-2) complexed with tissue inhibitor of metalloproteinase (TIMP)-2 by a cell surface activator of human uterine cervical fibrolblasts // Ketsugo soshiki, 1995. Vol. 27, N oct. Suppl..-С.23

3.
AxyR, an AraC family transcriptional activator of the xylanase 3 gene, requires xylo-oligosaccharides as a cofactor for DNA binding in Paenibacillus sp. strain W-61 // Biosci., Biotechnol. and Biochem., 2012. Vol. 76, N 5.-С.1051-1054

4.
Cadaverine covalently linked to peptidoglycan is required for interaction between the peptidoglycan and the periplasm-exposed S-layer-homologous domain of major outer membrane protein Mep45 in Selenomonas ruminantium // J. Bacteriol., 2010. Vol. 192, N 22.-С.5953-5961

5.
Inatsu Characterization of Bacillus subtilis strains isolated from fermented soybean foods in Southeast Asia: Comparison with B. subtilis (natto) starter strains // JARQ: Jap. Agr. Res. Quart., 2002. Vol. 36, N 3.-С.169-175

6.
Inatsu Characterization of Bacillus subtilis strains isolated from fermented soybean foods in Southeast Asia: Comparison with B. subtilis (natto) starter strains // JARQ: Jap. Agr. Res. Quart., 2002. Vol. 36, N 3.-С.169-175

7.
Nagai Chemical analysis of poly-'гамма'-glutamic acid produced by plasmid-free Bacillus subtilis (natto): Evidence that plasmids are not involved in poly-'гамма'-glutamic acid production // J. Gen. and Appl. Microbiol., 1997. Vol. 43, N 3.-С.139-143

8.
Cloning of the P. aeruginosa cytotoxin gene by oligonucleotide probe // Jap. J. Med. Sci. and Biol., 1988. Vol. 41, N 5-6.-С.211-212

9.
Cytoplasmic tail-dependent internalization of membrane-type 1 matrix metalloproteinase is important for its invasion-promoting activity // J. Cell Biol., 2001. Vol. 155, N 7.-С.1345-1356

10.
Nakada Divergent structure and regulatory mechanism of proline catabolic systems: Characterization of the putAP proline catabolic operon of Pseudomonas aeruginosa PAO1 and its regulation by PruR, an AraC/XylS family protein // J. Bacteriol., 2002. Vol. 184, N 20.-С.5633-5640

11.
Tran Divergent structure of the ComQXPA quorum-sensing components: Molecular basis of strain-specific communication mechanism in Bacillus subtilis // Mol. Microbiol., 2000. Vol. 37, N 5.-С.1159-1171

12.
Effects of mutations in the repA gene of plasmid Rts1 on plasmid replication and autorepressor function // J. Bacteriol., 1990. Vol. 172, N 2.-С.786-792

13.
Homophilic complex formation of MT1-matrix metalloproteinase is essential to express collagenolytic activity on the cell surface // Int. J. Exp. Pathol., 2005. Vol. 86, N 6.-С.A77

14.
Nakada Identification of the putrescine biosynthetic genes in Pseudomonas aeruginosa and characterization of agmatine deiminase and N-carbamoylputrescine amidohydrolase of the arginine decarboxylase pathway // Microbiology, 2003. Vol. 149, N 3.-С.707-714

15.
Nakada Identification of the putrescine biosynthetic genes in Pseudomonas aeruginosa and characterization of agmatine deiminase and N-carbamoylputrescine amidohydrolase of the arginine decarboxylase pathway // Microbiology, 2003. Vol. 149, N 3.-С.707-714

16.
Matrix metalloproteinase-2 production and its binding to the matrix are increased in abdominal aortic aneunysms // Arteriosclerosis, Thrombosis, and Vasc. Biol., 1998. Vol. 18, N 10.-С.1625-1633

17.
Membrane-type 1 matrix metalloproteinase cleaves CD44 and promotes cell migration // J. Cell Biol., 2001. Vol. 153, N 5.-С.893-904

18.
Membrane-type 1 matrix metalloproteinase cleaves CD44 and promotes cell migration // J. Cell Biol., 2001. Vol. 153, N 5.-С.893-904

19.
Molecular characterization and regulation of an operon encoding a system for transport of arginine and ornithine and the ArgR regulatory protein in Pseudomonas aeruginosa // J. Bacteriol., 1998. Vol. 180, N 21.-С.5559-5566

20.
Itoh MT1-MMP: A potent modifier of pericellular microenvironment // J. Cell. Physiol., 2006. Vol. 206, N 1.-С.1-8

 1-20    21-27 
 




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