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从三列叉节藻红藻中分离出的异凝集素BTL-2对具有酶活性的磷脂酶A2药理作用的调节

Modulation of the pharmacological effects of enzymatically-active PLA2 by BTL-2, an isolectin isolated from the Bryothamnion triquetrum red alga.

作者信息

Oliveira Simone Cb, Fonseca Fabiana V, Antunes Edson, Camargo Enilton A, Morganti Rafael P, Aparício Ricardo, Toyama Daniela O, Beriam Luís Os, Nunes Eudismar V, Cavada Benildo S, Nagano Celso S, Sampaio Alexandre H, Nascimento Kyria S, Toyama Marcos H

机构信息

Biochemistry Department, Biology Institute, UNICAMP, Campinas, São Paulo, Brazil.

出版信息

BMC Biochem. 2008 Jun 6;9:16. doi: 10.1186/1471-2091-9-16.

Abstract

BACKGROUND

An interaction between lectins from marine algae and PLA2 from rattlesnake was suggested some years ago. We, herein, studied the effects elicited by a small isolectin (BTL-2), isolated from Bryothamnion triquetrum, on the pharmacological and biological activities of a PLA2 isolated from rattlesnake venom (Crotalus durissus cascavella), to better understand the enzymatic and pharmacological mechanisms of the PLA2 and its complex.

RESULTS

This PLA2 consisted of 122 amino acids (approximate molecular mass of 14 kDa), its pI was estimated to be 8.3, and its amino acid sequence shared a high degree of similarity with that of other neurotoxic and enzymatically-active PLA2s. BTL-2 had a molecular mass estimated in approximately 9 kDa and was characterized as a basic protein. In addition, BTL-2 did not exhibit any enzymatic activity. The PLA2 and BTL-2 formed a stable heterodimer with a molecular mass of approximately 24-26 kDa, estimated by molecular exclusion HPLC. In the presence of BTL-2, we observed a significant increase in PLA2 activity, 23% higher than that of PLA2 alone. BTL-2 demonstrated an inhibition of 98% in the growth of the Gram-positive bacterial strain, Clavibacter michiganensis michiganensis (Cmm), but only 9.8% inhibition of the Gram-negative bacterial strain, Xanthomonas axonopodis pv passiflorae (Xap). PLA2 decreased bacterial growth by 27.3% and 98.5% for Xap and Cmm, respectively, while incubating these two proteins with PLA2-BTL-2 inhibited their growths by 36.2% for Xap and 98.5% for Cmm.PLA2 significantly induced platelet aggregation in washed platelets, whereas BTL-2 did not induce significant platelet aggregation in any assay. However, BTL-2 significantly inhibited platelet aggregation induced by PLA2. In addition, PLA2 exhibited strong oedematogenic activity, which was decreased in the presence of BTL-2. BTL-2 alone did not induce oedema and did not decrease or abolish the oedema induced by the 48/80 compound.

CONCLUSION

The unexpected results observed for the PLA2-BTL-2 complex strongly suggest that the pharmacological activity of this PLA2 is not solely dependent on the presence of enzymatic activity, and that other pharmacological regions may also be involved. In addition, we describe for the first time an interaction between two different molecules, which form a stable complex with significant changes in their original biological action. This opens new possibilities for understanding the function and action of crude venom, an extremely complex mixture of different molecules.

摘要

背景

几年前有人提出,海藻凝集素与响尾蛇的磷脂酶A2(PLA2)之间存在相互作用。在此,我们研究了从三列叉节藻(Bryothamnion triquetrum)中分离出的一种小异凝集素(BTL-2)对从响尾蛇毒液(Crotalus durissus cascavella)中分离出的PLA2的药理和生物学活性的影响,以更好地理解PLA2及其复合物的酶促和药理机制。

结果

这种PLA2由122个氨基酸组成(近似分子量为14 kDa),其pI估计为8.3,其氨基酸序列与其他神经毒性和具有酶活性的PLA2具有高度相似性。BTL-2的分子量估计约为9 kDa,被鉴定为一种碱性蛋白。此外,BTL-2未表现出任何酶活性。通过分子排阻高效液相色谱法估计,PLA2和BTL-2形成了一种稳定的异二聚体,分子量约为24 - 26 kDa。在存在BTL-2的情况下,我们观察到PLA2活性显著增加,比单独的PLA2高23%。BTL-2对革兰氏阳性细菌菌株密歇根棒状杆菌密歇根亚种(Clavibacter michiganensis michiganensis,Cmm)的生长有98%的抑制作用,但对革兰氏阴性细菌菌株西番莲黄单胞菌(Xanthomonas axonopodis pv passiflorae,Xap)的抑制作用仅为9.8%。PLA2分别使Xap和Cmm的细菌生长减少27.3%和98.5%,而将这两种蛋白与PLA2 - BTL-2一起孵育时,对Xap和Cmm的生长抑制率分别为36.2%和98.5%。PLA2在洗涤过的血小板中显著诱导血小板聚集,而BTL-2在任何实验中均未诱导显著的血小板聚集。然而,BTL-2显著抑制PLA2诱导的血小板聚集。此外,PLA2表现出强烈的致水肿活性,在存在BTL-2的情况下该活性降低。单独的BTL-2不诱导水肿,也不降低或消除由48/80化合物诱导的水肿。

结论

PLA2 - BTL-2复合物观察到的意外结果强烈表明,这种PLA2的药理活性并非仅取决于酶活性的存在,其他药理区域可能也参与其中。此外,我们首次描述了两种不同分子之间的相互作用,它们形成了一种稳定的复合物,其原始生物学作用发生了显著变化。这为理解粗毒液(一种极其复杂的不同分子混合物)的功能和作用开辟了新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab4b/2443151/1dc4ff70d97e/1471-2091-9-16-1.jpg

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