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1.
生物素标记钙调素用于植物钙调素结合蛋白的检测   总被引:4,自引:0,他引:4  
用生物素标记了花椰菜CaM。生物素标记的CaM具有与天然CaM相似的Ca^2+依赖电泳特性,可激活CaM依赖性磷酸二酯酶,能够检测出50ng的磷酸二酯酶。利用它建立了检测植物CaM结合蛋白的生物素-覆盖法并证实酶标亲和素可与胡萝卜愈伤组织内64kD蛋白质非特异结合,因此将此法运用于植物材料时必要设置酶标亲和素处理的对照。用生物素-覆盖法检测胡萝卜愈伤组织形态过程中的CaM结合蛋白时可检出2,4-D  相似文献   

2.
白芷培养细胞外钙调素结合蛋白的胶体金电镜定位研究   总被引:5,自引:1,他引:4  
利用胶体金标主民技术制备了具有生物活性的植物Cam-BAS-gold探针,并用此探针建立了白芷愈伤组织培养细胞下调素结合蛋白的透射电镜标 记方法。标记结果显示,在1mmol/LCa^2+存在下,用EGTA洗涤过的白芷愈伤组织培养细胞壁表面有金颗粒分布,而分别在含有EGTA、TFP、过量未标记的CaM、CaM抗体存在的民政部下,用金示CaM探针进行标记,以及用的各对照组,细胞壁表面金颗粒则消失,说明  相似文献   

3.
通过CaM-Sepharose4B亲和层析方法从云南松花粉中提取出10种CaM结合蛋白。它们均能抑制CaM对PDE的激活,但这种抑制可被随后加入的过量的CaM所消除。酶活测定表明CaM结合蛋白中有Ca2+-依赖的ATPase活力,但无植酸酶、过氧化物酶、酸性磷酸酶和磷脂酶D活性。  相似文献   

4.
NAD激酶在光合作用等植物生理过程中起重要作用。NAD激酶的激活依赖于钙离子和钙调素(CalmOdulin,CaM).从植物中分离得到的一种新的CaM结合蛋白CaMBP-10(BP-10)明显抑制NAD激酶的激活活性,抑制作用可被CaM所克服.动力学研究表明,抑制效应是BP-10与CaM之间特异性相互作用的结果。实验证实BP-10对NAD激酶活性起着重要调节作用.  相似文献   

5.
白芷细胞外21kD钙调素结合蛋白的生理功能初探   总被引:5,自引:0,他引:5  
利用Sephadex G-100及CM-Sepharose层析法,从白芷悬浮培养细胞的胞外盐提液中纯化了21kD钙调素结合蛋白(21kD CaMBP),测其等电点的pH为8.9,紫外薄层扫描显示其纯度达94%以上,以此蛋白为抗原,用免疫小鼠得水法制备了特异性抗体。由纯化的21kD CaMBP及其特异性抗体研究其对白芷悬浮培养细胞增殖的影响,结果表明:加入外源纯化的21kD CaMBP抑制细胞增殖,  相似文献   

6.
从每公斤萌发24h的玉米胚丙酮粉中可提纯得63mg的钙调素(CaM),这是目前从每公斤植物材料中所提纯得CaM的最高记录。对其理化性质的研究表明,玉米胚CaM 有较高的生物学活性,能较好地激活磷酸二酯酶,其紫色吸收光谱,SDS-PAGE电泳行为及氨基酸组成与其它的植物CaM相似。上述结果表明玉米胚是1个提取植物CaM相似。上述结果表明玉米胚是1个提取植物CaM的适宜材料。  相似文献   

7.
利用Sephadex G100 及CMSepharose层析法,从白芷悬浮培养细胞的胞外盐提液中纯化了21 kD 钙调素结合蛋白(21 kDCaMBP) ,测其等电点的pH 为8 .9 ,紫外薄层扫描显示其纯度达94 % 以上。以此蛋白为抗原,用免疫小鼠腹水法制备了特异性抗体。由纯化的21 kDCaMBP及其特异性抗体研究其对白芷悬浮培养细胞增殖的影响,结果表明:加入外源纯化的21 kDCaMBP 抑制细胞增殖,半抑制浓度约8 μg/ml;而加入21 kDCaMBP特异性抗体却促进细胞增殖效应。推测胞外内源存在的21 kDCaMBP在生理条件下可能具有参与调节胞外活化CaM 信号分子的浓度,从而调节胞外CaM 的生物学功能。  相似文献   

8.
玉米精细胞及体细胞原生质体表膜蛋白的比较   总被引:1,自引:1,他引:0  
以低渗冲击法(改良两步法)及Percoll密度梯度离心,成功分离纯化生活玉米(Zeam ays)精细胞;以混合酶解法制备玉米叶原生质体和愈伤组织原生质体;以NHS-生物素标记完整精细胞及原生质体表膜蛋白,进行SDS-PAGE和Western blot,并以辣根过氧化物酶标亲和素检测被标记的表膜蛋白。结果表明,在精细胞中标记蛋白有4 种,分子量分别为48、59、67、79 kD;叶片原生质体中有5 种,分子量分别为54、58、66、71、78 kD;愈伤组织原生质体中仅有2 种,分子量67 和80 kD。其中48 kD蛋白为精细胞所特有,54 kD 和71 kD蛋白为叶片细胞所特有  相似文献   

9.
本实验观察了活性钙调素(CaM)含量和CaM依赖性蛋白激酶Ⅱ(CaMkinaseⅡ)活性在急性低氧(模拟海拔7000m,5h)和常氧对照大鼠脑子组织中的变化。用流式产胞仪(FACS)所测两组动物脑皮层细胞的CaM,平均荧光强度分别为40.0±4.9和46.1±5.8,急性低氧组明显低于常氧对照组(P<0.05);用同位素液闪计数法所测两组动物皮层脑匀浆提取液中CaMkinaseⅡ活性,分别为184.3±8.1和198.8±9.4pmolPi·min-1·mg-1pro,急性低氧组明显低于常氧对照组(P<0.01)。结果提示CaM和CaMkinaseⅡ对低氧较为敏感,急性低氧时中枢神经细胞结构或功能的紊乱可能与活性CaM的含量减少和CaMkinaseⅡ活性能下降有关。  相似文献   

10.
抗生物素蛋白结合蛋白的发现及分离纯化   总被引:2,自引:0,他引:2  
本文报道了在日本血吸虫感染的兔血清及日本血吸虫卵中,存在一种能与抗生物素蛋白(又称亲和素)专一性结合的蛋白质,称为抗生物素蛋白结合蛋白。该蛋白质与亲和素的结合与生物素及亲和素的糖链部分无关,并能在高PH、高浓度盐及去污剂等条件下与亲和素结合。利用DEA-52离子交换柱及偶联有亲和素的Sepharose4B亲和层析柱,从日本血吸虫感染的兔血清中,分离纯化了该蛋白质。提纯的亲和素结合蛋白在SDS-PA  相似文献   

11.
N A Durso  R J Cyr 《The Plant cell》1994,6(6):893-905
The microtubules (MTs) of higher plant cells are organized into arrays with essential functions in plant cell growth and differentiation; however, molecular mechanisms underlying the organization and regulation of these arrays remain largely unknown. We have approached this problem using tubulin affinity chromatography to isolate carrot proteins that interact with MTs. From these proteins, a 50-kD polypeptide was selectively purified by exploiting its Ca(2+)-dependent binding to calmodulin (CaM). This polypeptide was identified as a homolog of elongation factor-1 alpha (EF-1 alpha)--a highly conserved and ubiquitous protein translation factor. The carrot EF-1 alpha homolog bundles MTs in vitro, and moreover, this bundling is modulated by the addition of Ca2+ and CaM together (Ca2+/CaM). A direct binding between the EF-1 alpha homolog and MTs was demonstrated, providing novel evidence for such an interaction. Based on these findings, and others discussed herein, we propose that an EF-1 alpha homolog mediates the lateral association of MTs in plant cells by a Ca2+/CaM-sensitive mechanism.  相似文献   

12.
Using a gel-overlay technique of biotinylated calmodulin (CaM), we showed that maize cytosolic Hsp70 protein could bind to CaM in the presence of 1 mM CaCl2. The purified maize cytosolic Hsp70 inhibited the activity of CaM-dependent NADK in a concentration-dependent manner. A synthetic peptide, which possesses the 21 amino acid sequence, PRALRRLRTACERAKRTLSST, at positions 261-281 in maize cytosolic Hsp70, could associate with CaM in the presence of 1 mM calcium. The synthetic peptide inhibited CaM-dependent NADK activity and PDE activity. This indicates that the 21-amino acid sequence at positions 261-281 is the CaM-binding site. The binding of CaM to Hsp70 inhibited the ATPase activity of Hsp70. The possible regulator function of Hsp70 in cell signaling events in response to heat stress is discussed.  相似文献   

13.
Tang Jun  Wu Shupin  Bai Juan  Sun Daye 《Planta》1996,198(4):510-516
A 21-kDa calmodulin (CaM)-binding protein and a 19-kDa calmodulin-binding protein were detected in 0.1 M CaCl2 extracts of Angelica dahurica L. suspension-cultured cells and carrot (Daucus carota L.) suspension-cultured cells, respectively, using a biotinylated cauliflower CaM gel-overlay technique in the presence of 1 mM Ca2+. No bands, or very weak bands, were shown on sodium dodecyl sulfate-polyacrylamide gel electrophoresis gels overlayed with biotinylated cauliflower CaM when 1 mM Ca2+ was replaced by 5 mM EGTA, indicating that the binding of these two CaM-binding proteins to CaM was dependent on Ca2+. Less 21-kDa CaM-binding protein was found in culture medium of Angelica dahurica suspension cells; however, a 21-kDa protein was abundant in the cell wall. We believe that the 21-kDa CaM-binding protein is mainly in the cell wall of Angelica dahurica. Based on its reaction with periodic acid-Schiff (PAS) reagent, this 21-kDa protein would appear to be a glycoprotein. The 21-kDa CaM-binding protein was purified by a procedure including Sephadex G-100 gel filtration and CM-Sepharose cation-exchange column chromatography. The purity reached 91% according to gel scanning. The purified 21-kDa CaM-binding protein inhibited the activity of CaM-dependent NAD kinase and the degree of inhibition increased with augmentation of the 21-kDa protein, which appeared to be the typical characteristic of CaM-binding protein.  相似文献   

14.
自旋标记钙调蛋白与酸枣仁皂甙A相互作用研究   总被引:1,自引:0,他引:1  
中草药有效成份酸枣仁皂甙A是钙调蛋白CaM的一种天然非竞争性拮抗剂。利用氮氧自由基马来酰亚胺衍生物标记CaM研究了二者的相互作用。结果表明,每分子CaM至少可以结合二个分子的酸枣仁皂钙A,二者的作用影响CaM上Lys残基主要是75,94)的环境,推测酸枣仁皂钙A是通过疏水作用结合到CaM分子两端的疏水沟区。通过比较三氟拉嗪TFP与酸枣仁皂甙A的结构特点,抑制性质与结合位点,提出了CaM调节环核苷酸磷酸二酯酶PDE的模式。  相似文献   

15.
The maize cytosolic 70 kD stress protein (HSC70) has been purified by a two-step procedure employing affinity chromatography on ATP-agarose followed by DEAE52 ion-exchange chromatography. Using a biotinylated cauliflower calmodulin (CAM) gel-overlay technique in the presence of 1 mmol/L Ca2+ , the HSCT0 could bind to CAM. No band was shown on sodium dodecyl sulfate-polyacrylamide gel overlayed with biotinylated cauliflower CaM when 1 mmoL/L Ca2+ was replaced by 5 mmol/L EGTA. It indicated that the binding of HSC70 to CaM was dependent on Ca2+. The purified HSC70 inhibited the activity of CaM-dependent NADK and the degree of inhibition increased with augmentation of the HSC70, which appeared to be typically characteristic to CaM- binding protein.  相似文献   

16.
The activation of six target enzymes by calmodulin phosphorylated on Tyr99 (PCaM) and the binding affinities of their respective calmodulin binding domains were tested. The six enzymes were: myosin light chain kinase (MLCK), 3'-5'-cyclic nucleotide phosphodiesterase (PDE), plasma membrane (PM) Ca2+-ATPase, Ca2+-CaM dependent protein phosphatase 2B (calcineurin), neuronal nitric oxide synthase (NOS) and type II Ca2+-calmodulin dependent protein kinase (CaM kinase II). In general, tyrosine phosphorylation led to an increase in the activatory properties of calmodulin (CaM). For plasma membrane (PM) Ca2+-ATPase, PDE and CaM kinase II, the primary effect was a decrease in the concentration at which half maximal velocity was attained (Kact). In contrast, for calcineurin and NOS phosphorylation of CaM significantly increased the Vmax. For MLCK, however, neither Vmax nor Kact were affected by tyrosine phosphorylation. Direct determination by fluorescence techniques of the dissociation constants with synthetic peptides corresponding to the CaM-binding domain of the six analysed enzymes revealed that phosphorylation of Tyr99 on CaM generally increased its affinity for the peptides.  相似文献   

17.
Tuberization in potato is controlled by hormonal and environmental signals. Ca(2+), an important intracellular messenger, and calmodulin (CaM), one of the primary Ca(2+) sensors, have been implicated in controlling diverse cellular processes in plants including tuberization. The regulation of cellular processes by CaM involves its interaction with other proteins. To understand the role of Ca(2+)/CaM in tuberization, we have screened an expression library prepared from developing tubers with biotinylated CaM. This screening resulted in isolation of a cDNA encoding a novel CaM-binding protein (potato calmodulin-binding protein (PCBP)). Ca(2+)-dependent binding of the cDNA-encoded protein to CaM is confirmed by (35)S-labeled CaM. The full-length cDNA is 5 kb long and encodes a protein of 1309 amino acids. The deduced amino acid sequence showed significant similarity with a hypothetical protein from another plant, Arabidopsis. However, no homologs of PCBP are found in nonplant systems, suggesting that it is likely to be specific to plants. Using truncated versions of the protein and a synthetic peptide in CaM binding assays we mapped the CaM-binding region to a 20-amino acid stretch (residues 1216-1237). The bacterially expressed protein containing the CaM-binding domain interacted with three CaM isoforms (CaM2, CaM4, and CaM6). PCBP is encoded by a single gene and is expressed differentially in the tissues tested. The expression of CaM, PCBP, and another CaM-binding protein is similar in different tissues and organs. The predicted protein contained seven putative nuclear localization signals and several strong PEST motifs. Fusion of the N-terminal region of the protein containing six of the seven nuclear localization signals to the reporter gene beta-glucuronidase targeted the reporter gene to the nucleus, suggesting a nuclear role for PCBP.  相似文献   

18.
Purified porcine erythrocyte membrane Ca(2+)-ATPase and 3':5'-cyclic nucleotide phosphodiesterase were stimulated in a dose-dependent, saturable manner with the vitamin D-dependent calcium binding protein from rat kidney, calbindin-D28k (CaBP-D28k). The concentration of CaBP-D28k required for half-maximal activation (K0.5 act.) of the Ca(2+)-ATPase was 28 nM compared to 2.2 nM for calmodulin (CaM), with maximal activation equivalent upon addition of either excess CaM or CaBP-D28k. 3':5'-Cyclic nucleotide phosphodiesterase (PDE) also showed equivalent maximum saturable activation by calbindin (K0.5 act. = 90 nM) or calmodulin (K0.5 act. = 1.2 nM). CaBP-D28k was shown to effectively compete with CaM-Sepharose for PDE binding. Immunoprecipitation with CaBP-D28k antiserum completely inhibited calbindin-mediated activation of PDE but had no effect on calmodulin's ability to activate PDE. While the physiological significance of these results remains to be established, they do suggest that CaBP-D28k can activate enzymes and may be a regulator of yet to be identified target enzymes in certain tissues.  相似文献   

19.
轻稀土离子对钙调蛋白激活的磷酸二酯酶活力作用的影响   总被引:5,自引:2,他引:3  
研究了轻稀土离子(Ln3+)对钙调蛋白(CaM)调控的磷酸二酯酶(PDE)活力的影响。结果表明,在无Ca2+的CaM(Apo—CaM)体系中,由CaM调节的PDE的活力随Ln3+浓度的变化曲线是双相效应,即在高浓度时,Ln3+具有抑制CaM调节PDE活力的能力;低浓度的Ln3+可以提高CaM调节PDE活力的能力。在Ca2+4-CaM-PDE体系中,高浓度的Ln3+的加入能抑制ChM调节PDE活力的能力,其抑制程度因其离子不同而异。CaM的两类拮抗剂JuA(非竞争性抑制剂)和TFP(竞争性抑制剂)都能抑制CaM-Ln3+-PDE系统的活性。最后对Ln3+和CaM相互作用的分子机制进行了初步的讨论。  相似文献   

20.
A decrease in mouse oocyte cAMP occurs during commitment to resume meiosis (R. M. Schultz, R. R. Montgomery, and J. R. Belanoff, 1983, Dev. Biol. 97, 264-273). Experiments described in this report were performed to ascertain if oocyte cyclic nucleotide phosphodiesterase (PDE) is involved in this decrease. PDE activity was found in extracts of mouse oocytes. The activity appeared soluble and not membrane bound. For each of three different PDE inhibitors, a positive correlation was found between the ability of increasing concentrations of each compound to inhibit PDE in oocyte extracts and to inhibit germinal vesicle breakdown (GVBD). Moreover, the more potent the PDE inhibitor, the more effectively it inhibited GVBD. The possibility that calmodulin (CaM) plays a role in maturation was examined since CaM modulates PDE activity in other systems. About 0.3% of total oocyte protein is CaM as determined by radioimmunoassay and activation of exogenous PDE. A CaM-dependent step in maturation was suggested since the CaM inhibitors trifluoperazine and calmidizolium inhibited GVBD in a dose-dependent manner. In addition, the CaM inhibitors W7 and W13 inhibited GVBD at lower concentrations than the less-active corresponding congeners W5 and W12. Oocyte extracts contained a CaM-modulated PDE. Activity was inhibited about 50% by addition of EGTA, and fully restored by addition of exogenous CaM and excess calcium. cAMP hydrolysis was inhibited in a dose-dependent manner by either trifluoperazine, calmidizolium, or W7; maximal inhibition was also about 50%. CaM-modulated PDE, however, did not appear to be the target for the effects of CaM inhibitors on GVBD, since concentrations of W7 that inhibited maturation did not inhibit cAMP hydrolysis in the oocyte. Results from these studies suggest that oocyte PDE is involved in the decrease in cAMP associated with resumption of meiosis, but that the CaM-dependent step occurs subsequent to or concurrently with the drop in cAMP.  相似文献   

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