1 |
Law RH, Zhang Q, McGowan S, et al. An overview of the serpin superfamily[J]. Genome Biol, 2006, 7(5): 216.
|
2 |
Carrell R, Travis J. α1-Antitrypsin and the serpins: variation and countervariation[J]. Trends Biochem Sci, 1985, 10(1): 20-24.
|
3 |
Song J, Matthews AY, Reboul CF, et al. Predicting serpin/protease interactions[J]. Methods Enzymol, 2011, 501: 237-273.
|
4 |
Huntington JA. Serpin structure, function and dysfunction[J]. J Thromb Haemost, 2011, 9(): 26-34.
|
5 |
Mkaouar H, Akermi N, Kriaa A, et al. Serine protease inhibitors and human wellbeing interplay: new insights for old friends[J]. PeerJ, 2019, 7: e7224.
|
6 |
Irving JA, Shushanov SS, Pike RN, et al. Inhibitory activity of a heterochromatin-associated serpin (MENT) against papain-like cysteine proteinases affects chromatin structure and blocks cell proliferation[J]. J Biol Chem, 2002, 277(15): 13192-13201.
|
7 |
Marijanovic EM, Fodor J, Riley BT, et al. Reactive centre loop dynamics and serpin specificity[J]. Sci Rep, 2019, 9(1): 3870.
|
8 |
Gettins PG. Serpin structure, mechanism, and function[J]. Chem Rev, 2002, 102(12): 4751-4804.
|
9 |
Ray CA, Black RA, Kronheim SR, et al. Viral inhibition of inflammation: cowpox virus encodes an inhibitor of the interleukin-1β converting enzyme[J]. Cell, 1992, 69(4): 597-604.
|
10 |
Zhou A, Wei Z, Stanley PL, et al. The S-to-R transition of corticosteroid-binding globulin and the mechanism of hormone release[J]. J Mol Biol, 2008, 380(1): 244-251.
|
11 |
Pemberton PA, Stein PE, Pepys MB, et al. Hormone binding globulins undergo serpin conformational change in inflammation[J]. Nature, 1988, 336(6196): 257-258.
|
12 |
Nagata K. Hsp47: a collagen-specific molecular chaperone[J]. Trends Biochem Sci, 1996, 21(1): 22-26.
|
13 |
Zou Z, Anisowicz A, Hendrix MJ, et al. Maspin, a serpin with tumor-suppressing activity in human mammary epithelial cells[J]. Science, 1994, 263(5146): 526-529.
|
14 |
Gaci N, Dobrijevic D, Boudebbouze S, et al. Patented biotechnological applications of serpin: an update[J]. Recent Pat DNA Gene Seq, 2013, 7(2): 137-143.
|
15 |
Irving JA, Steenbakkers PJ, Lesk AM, et al. Serpins in prokaryotes[J]. Mol Biol Evol, 2002, 19(11): 1881-1890.
|
16 |
Ksiazek M, Mizgalska D, Enghild JJ, et al. Miropin, a novel bacterial serpin from the periodontopathogen Tannerella forsythia, inhibits a broad range of proteases by using different peptide bonds within the reactive center loop[J]. J Biol Chem, 2015, 290(1): 658-670.
|
17 |
Goulas T, Ksiazek M, Garcia-Ferrer I, et al. A structure-derived snap-trap mechanism of a multispecific serpin from the dysbiotic human oral microbiome[J]. J Biol Chem, 2017, 292(26): 10883-10898.
|
18 |
Warinner C, Speller C, Collins MJ. A new era in palaeomicrobiology: prospects for ancient dental calculus as a long-term record of the human oral microbiome[J]. Philos Trans R Soc Lond B Biol Sci, 2015, 370(1660): 20130376.
|
19 |
Paster BJ, Boches SK, Galvin JL, et al. Bacterial diversity in human subgingival plaque[J]. J Bacteriol, 2001, 183(12): 3770-3783.
|
20 |
Petersen PE, Bourgeois D, Ogawa H, et al. The global burden of oral diseases and risks to oral health[J]. Bull World Health Organ, 2005, 83(9): 661-669.
|
21 |
Holt SC, Ebersole JL. Porphyromonas gingivalis, Treponema denticola, and Tannerella forsythia: the ̒ ̒red complex' ', a prototype polybacterial pathogenic consortium in periodontitis[J]. Periodontol 2000, 2005, 38: 72-122.
|
22 |
Socransky SS, Haffajee AD, Cugini MA, et al. Microbial complexes in subgingival plaque[J]. J Clin Periodontol, 1998, 25(2): 134-144.
|
23 |
Dewhirst FE, Chen T, Izard J, et al. The human oral microbiome[J]. J Bacteriol, 2010, 192(19): 5002-5017.
|
24 |
Belaaouaj A. Neutrophil elastase-mediated killing of bacteria: lessons from targeted mutagenesis[J]. Microbes Infect, 2002, 4(12): 1259-1264.
|
25 |
Collins CB, Aherne CM, Ehrentraut SF, et al. α1-Antitrypsin therapy ameliorates acute colitis and chronic murine ileitis[J]. Inflamm Bowel Dis, 2013, 19(9): 1964-1973.
|
26 |
Teshigawara S, Wada J, Hida K, et al. Serum vaspin concentrations are closely related to insulin resistance, and rs77060950 at SERPINA12 genetically defines distinct group with higher serum levels in Japanese population[J]. J Clin Endocrinol Metab, 2012, 97(7): E1202-E1207.
|
27 |
Teoh SS, Vieusseux J, Prakash M, et al. Maspin is not required for embryonic development or tumour suppression[J]. Nat Commun, 2014, 5: 3164.
|
28 |
Wang WL, Xu SY, Ren ZG, et al. Application of metagenomics in the human gut microbiome[J]. World J Gastroenterol, 2015, 21(3): 803-814.
|
29 |
Cremonesi E, Governa V, Garzon JFG, et al. Gut microbiota modulate T cell trafficking into human colorectal cancer[J]. Gut, 2018, 67(11): 1984-1994.
|
30 |
Yu T, Guo F, Yu Y, et al. Fusobacterium nucleatum promotes chemoresistance to colorectal cancer by modulating autophagy[J]. Cell, 2017, 170(3): 548-563.e16.
|