Polygalacturonase isozyme 2 binding and catalysis in cell walls from tomato fruit: pH and beta-subunit effects

被引:12
作者
Chun, JP [1 ]
Huber, DJ [1 ]
机构
[1] UNIV FLORIDA, INST FOOD & AGR SCI, DEPT HORT SCI, GAINESVILLE, FL 32611 USA
关键词
beta-subunit; cell wall; converter; Lycopersicon esculentum; pectin; polygalacturonase; tomato;
D O I
10.1034/j.1399-3054.1997.1010205.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The catalytic activity of endopolygalacturonase (PG, EC 3.2.1.15) against pectic polymers in vitro is typically not expressed in vivo. In the present study, the binding and catalytic properties of PG isozyme 2 and the influence of the beta-subunit protein were investigated in cell walls prepared from tomato fruit expressing an antisense gene to the beta-subunit protein. Cell walls prepared from mature-green fruit were employed for binding and assay of PG2. Walls were provided with rate-limiting quantities of purified PG2 and incubated at 100 mM KCl, pH 4.5, or 25 mM KCl, pH 6.0. Cell walls of both beta-subunit antisense and wild-type fruit retained comparable quantities of added PG2. The release of pectin from PG2-loaded walls was proportional to the quantity of added enzyme, consistent with a finite catalytic capacity of individual PG proteins. beta-Subunit-antisense cell walls released 2- to 3-fold higher levels of pectin in response to PG2 than did wild-type walls. Cell walls incubated at pH 6.0 released lower quantities and showed less extensive depolymerization of pectins than did walls incubated at pH 4.5. Pectins recovered from ripe fruit were similar in size distribution to polymers released by PG2 at pH 6.0, indicating that pH can influence both quantitative and qualitative aspects of pectin metabolism and may be responsible for the restricted hydrolysis of pectins in vivo. Molecular mass differences were not evident in the polymers rendered freely soluble in response to PG2 mediated hydrolysis of beta-subunit-antisense compared with wild-type cell walls. The solubilization of pectin from cell walls was not the sole indicator of the extent of PG-mediated cell wall hydrolysis. Hydrolytic modifications were also evident in a pectic fraction extracted from postcatalytic cell walls with 50 mM CDTA (trans-1,2-cyclohexanediamine-N,N,N',N'-tetraacetic acid), and were more extensive for the beta-subunit-antisense cell walls compared with the wild-type walls. Pectic polymers derived from ethanol insoluble-powders showed molecular mass downshifts during ripening but differences between the beta-subunit-antisense and wild-type fruits were not observed.
引用
收藏
页码:283 / 290
页数:8
相关论文
共 42 条
[21]  
PATEL D. S., 1958, FOOD RES, V23, P693
[22]  
Pogson B. J., 1993, Postharvest Biology and Technology, V3, P17, DOI 10.1016/0925-5214(93)90023-V
[23]   ON THE OCCURRENCE AND STRUCTURE OF SUBUNITS OF ENDOPOLYGALACTURONASE ISOFORMS IN MATURE-GREEN AND RIPENING TOMATO FRUITS [J].
POGSON, BJ ;
BRADY, CJ ;
ORR, GR .
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY, 1991, 18 (01) :65-79
[24]   LEVELS OF APOPLASTIC SOLUTES IN DEVELOPING STRAWBERRY FRUIT [J].
POMPER, KW ;
BREEN, PJ .
JOURNAL OF EXPERIMENTAL BOTANY, 1995, 46 (288) :743-752
[25]   2 FORMS OF POLYGALACTURONASE IN TOMATOES [J].
PRESSEY, R ;
AVANTS, JK .
BIOCHIMICA ET BIOPHYSICA ACTA, 1973, 309 (02) :363-369
[26]  
PRESSEY R, 1986, HORTSCIENCE, V21, P1183
[27]   REEVALUATION OF THE CHANGES IN POLYGALACTURONASES IN TOMATOES DURING RIPENING [J].
PRESSEY, R .
PLANTA, 1988, 174 (01) :39-43
[28]  
PRESSEY R, 1986, HORTSCIENCE, V21, P490
[29]  
Ruan YL, 1996, AUST J PLANT PHYSIOL, V23, P9
[30]   INVITRO CHARACTERIZATION OF TOMATO FRUIT SOFTENING - THE USE OF ENZYMICALLY ACTIVE CELL-WALLS [J].
RUSHING, JW ;
HUBER, DJ .
PLANT PHYSIOLOGY, 1984, 75 (04) :891-894