A truncated soluble Bacillus signal peptidase produced in Escherichia coli is subject to self-cleavage at its active site

被引:14
作者
van Roosmalen, ML [1 ]
Jongbloed, JDH [1 ]
Kuipers, A [1 ]
Venema, G [1 ]
Bron, S [1 ]
van Dijl, JM [1 ]
机构
[1] Groningen Biomol Sci & Biotechnol Inst, Dept Genet, NL-9750 AA Haren, Netherlands
关键词
D O I
10.1128/JB.182.20.5765-5770.2000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Soluble forms of Bacillus signal peptidases which lack their unique amino-terminal membrane anchor are prone to degradation, which precludes their high-level production in the cytoplasm of Escherichia coli. Here, we show that the degradation of soluble forms of the Bacillus signal peptidase SipS is largely due to self-cleavage. First, catalytically inactive soluble forms of this signal peptidase were not prone to degradation; in fact, these mutant proteins were produced at very high levels in E. coli. Second, the purified active soluble form of SipS displayed self-cleavage in vitro. Third, as determined by N-terminal sequencing, at least one of the sites of self-cleavage (between Ser15 and Met16 of the truncated enzyme) strongly resembles a typical signal peptidase cleavage site. Self-cleavage at the latter position results in complete inactivation of the enzyme, as Ser15 forms a catalytic dyad with Lys55. Ironically, self-cleavage between Ser15 and Met16 cannot be prevented by mutagenesis of Gly13 and Ser15, which conform to the -1, -3 rule for signal peptidase recognition, because these residues are critical for signal peptidase activity.
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页码:5765 / 5770
页数:6
相关论文
共 31 条
[1]  
BARKOCYGALLAGHER GA, 1992, J BIOL CHEM, V267, P1231
[2]   Different mechanisms for thermal inactivation of Bacillus subtilis signal peptidase mutants [J].
Bolhuis, A ;
Tjalsma, H ;
Stephenson, K ;
Harwood, CR ;
Venema, G ;
Bron, S ;
van Dijl, JM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (22) :15865-15868
[3]   Bacillus subtilis can modulate its capacity and specificity for protein secretion through temporally controlled expression of the sipS gene for signal peptidase I [J].
Bolhuis, A ;
Sorokin, A ;
Azevedo, V ;
Ehrlich, SD ;
Braun, PG ;
deJong, A ;
Venema, G ;
Bron, S ;
vanDijl, JM .
MOLECULAR MICROBIOLOGY, 1996, 22 (04) :605-618
[4]   The chemistry and enzymology of the type I signal peptidases [J].
Dalbey, RE ;
Lively, MO ;
Bron, S ;
VanDijl, JM .
PROTEIN SCIENCE, 1997, 6 (06) :1129-1138
[5]  
FIKES JD, 1990, J BIOL CHEM, V265, P3417
[6]  
FOLZ RJ, 1988, J BIOL CHEM, V263, P2070
[7]   The complete genome sequence of the Gram-positive bacterium Bacillus subtilis [J].
Kunst, F ;
Ogasawara, N ;
Moszer, I ;
Albertini, AM ;
Alloni, G ;
Azevedo, V ;
Bertero, MG ;
Bessieres, P ;
Bolotin, A ;
Borchert, S ;
Borriss, R ;
Boursier, L ;
Brans, A ;
Braun, M ;
Brignell, SC ;
Bron, S ;
Brouillet, S ;
Bruschi, CV ;
Caldwell, B ;
Capuano, V ;
Carter, NM ;
Choi, SK ;
Codani, JJ ;
Connerton, IF ;
Cummings, NJ ;
Daniel, RA ;
Denizot, F ;
Devine, KM ;
Dusterhoft, A ;
Ehrlich, SD ;
Emmerson, PT ;
Entian, KD ;
Errington, J ;
Fabret, C ;
Ferrari, E ;
Foulger, D ;
Fritz, C ;
Fujita, M ;
Fujita, Y ;
Fuma, S ;
Galizzi, A ;
Galleron, N ;
Ghim, SY ;
Glaser, P ;
Goffeau, A ;
Golightly, EJ ;
Grandi, G ;
Guiseppi, G ;
Guy, BJ ;
Haga, K .
NATURE, 1997, 390 (6657) :249-256
[8]   ELECTROBLOTTING OF MULTIPLE GELS - A SIMPLE APPARATUS WITHOUT BUFFER TANK FOR RAPID TRANSFER OF PROTEINS FROM POLYACRYLAMIDE TO NITROCELLULOSE [J].
KYHSEANDERSEN, J .
JOURNAL OF BIOCHEMICAL AND BIOPHYSICAL METHODS, 1984, 10 (3-4) :203-209
[9]   THE ENDOGENOUS BACILLUS-SUBTILIS (NATTO) PLASMIDS PTA1015 AND PTA1040 CONTAIN SIGNAL PEPTIDASE-ENCODING GENES - IDENTIFICATION OF A NEW STRUCTURAL MODULE ON CRYPTIC PLASMIDS [J].
MEIJER, WJJ ;
DEJONG, A ;
BEA, G ;
WISMAN, A ;
TJALSMA, H ;
VENEMA, G ;
BRON, S ;
MAARTEN, J ;
VANDIJL, JM .
MOLECULAR MICROBIOLOGY, 1995, 17 (04) :621-631
[10]   A SIGNAL PEPTIDE WITH A PROLINE NEXT TO THE CLEAVAGE SITE INHIBITS LEADER PEPTIDASE WHEN PRESENT IN A SEC-INDEPENDENT PROTEIN [J].
NILSSON, I ;
VONHEIJNE, G .
FEBS LETTERS, 1992, 299 (03) :243-246