Competitive binding of calmodulin isoforms to calmodulin-binding proteins: implication for the function of calmodulin isoforms in plants

被引:38
作者
Lee, SH [1 ]
Kim, MC [1 ]
Heo, WD [1 ]
Kim, JC [1 ]
Chung, WS [1 ]
Park, CY [1 ]
Park, HC [1 ]
Cheong, YH [1 ]
Kim, CY [1 ]
Lee, SH [1 ]
Lee, KJ [1 ]
Bahk, JD [1 ]
Lee, SY [1 ]
Cho, MJ [1 ]
机构
[1] Gyeongsang Natl Univ, Plant Mol Biol & Biotechnol Res Ctr, Dept Biochem, Chinju 660701, South Korea
来源
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY | 1999年 / 1433卷 / 1-2期
关键词
calmodulin isoforms; competitive binding calmodulin-binding proteins;
D O I
10.1016/S0167-4838(99)00149-1
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In plants, multiple calmodulin (CaM) isoforms exist in an organism which vary in their primary structures in as much as 32 residues out of their 148 amino acids. These CaM isoforms show differences in their expression patterns and/or target enzyme activation ability. To further understand the biological significance of CaM isoforms, we examined whether CaM isoforms act on specific regulatory targets. In gel overlay assays on various soybean tissue extracts, surprisingly, two soybean CaM isoforms (SCaM-1 and SCAM-4) did not show significant differences in their target binding protein profiles, although they exhibited minor differences in their relative target binding affinities. In addition, both SCaM isoforms not only effectively bound five known plant CaMBPs, but also showed competitive binding to these proteins. Finally, immunolocalization experiments with the SCaM proteins in sections of various tissues using specific antibodies revealed similar distribution patterns for the SCaM isoforms except for root tissues, which indicates that the SCaM isoforms are concomitantly expressed in most plant tissues. These results suggest that CaM isoforms may compete for binding to CaMBPs in vivo. This competitive nature of CaM isoforms may allow modulation of Ca2+/CaM signaling pathways by virtue of relative abundance and differential target activation potency. (C) 1999 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:56 / 67
页数:12
相关论文
共 47 条
[1]   Calmodulin-stimulated Ca2+-ATPases in the vacuolar and plasma membranes in cauliflower [J].
Askerlund, P .
PLANT PHYSIOLOGY, 1997, 114 (03) :999-1007
[2]  
BAUM G, 1993, J BIOL CHEM, V268, P19610
[3]   A RAPID AND SENSITIVE METHOD FOR DETECTION AND QUANTIFICATION OF CALCINEURIN AND CALMODULIN-BINDING PROTEINS USING BIOTINYLATED CALMODULIN [J].
BILLINGSLEY, ML ;
PENNYPACKER, KR ;
HOOVER, CG ;
BRIGATI, DJ ;
KINCAID, RL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1985, 82 (22) :7585-7589
[4]   DIFFERENTIAL EXPRESSION OF 2 CALMODULIN GENES IN RESPONSE TO PHYSICAL AND CHEMICAL STIMULI [J].
BOTELLA, JR ;
ARTECA, RN .
PLANT MOLECULAR BIOLOGY, 1994, 24 (05) :757-766
[5]  
BOYLE WJ, 1991, METHOD ENZYMOL, V201, P110
[6]   RAIN-INDUCED, WIND-INDUCED, AND TOUCH-INDUCED EXPRESSION OF CALMODULIN AND CALMODULIN-RELATED GENES IN ARABIDOPSIS [J].
BRAAM, J ;
DAVIS, RW .
CELL, 1990, 60 (03) :357-364
[7]   Homologues of the human multidrug resistance genes MRP and MDR contribute to heavy metal resistance in the soil nematode Caenorhabditis elegans [J].
Broeks, A ;
Gerrard, B ;
Allikmets, R ;
Dean, M ;
Plasterk, RHA .
EMBO JOURNAL, 1996, 15 (22) :6132-6143
[8]   Reciprocal regulation of mammalian nitric oxide synthase and calcineurin by plant calmodulin isoforms [J].
Cho, MJ ;
Vaghy, PL ;
Kondo, R ;
Lee, SH ;
Davis, JP ;
Rehl, R ;
Heo, WD ;
Johnson, JD .
BIOCHEMISTRY, 1998, 37 (45) :15593-15597
[9]  
COLLINGE M, 1989, J BIOL CHEM, V264, P8865
[10]   DISTRIBUTION OF CALMODULIN IN PEA-SEEDLINGS - IMMUNOCYTOCHEMICAL LOCALIZATION IN PLUMULES AND ROOT APICES [J].
DAUWALDER, M ;
ROUX, SJ ;
HARDISON, L .
PLANTA, 1986, 168 (04) :461-470