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夏科-莱登结晶蛋白(半乳糖凝集素-10)并非具有溶血磷脂酶活性的双功能半乳糖凝集素,而是以一种全新的结构方式结合一种溶血磷脂酶抑制剂。

Charcot-Leyden crystal protein (galectin-10) is not a dual function galectin with lysophospholipase activity but binds a lysophospholipase inhibitor in a novel structural fashion.

作者信息

Ackerman Steven J, Liu Li, Kwatia Mark A, Savage Michael P, Leonidas Demetres D, Swaminathan G Jawahar, Acharya K Ravi

机构信息

Department of Biochemistry and Molecular Biology, University of Illinois at Chicago, Chicago, Illinois 60612, USA.

出版信息

J Biol Chem. 2002 Apr 26;277(17):14859-68. doi: 10.1074/jbc.M200221200. Epub 2002 Feb 7.

Abstract

Charcot-Leyden crystal (CLC) protein, initially reported to possess weak lysophospholipase activity, is still considered to be the eosinophil's lysophospholipase, but it shows no sequence similarities to any known lysophospholipases. In contrast, CLC protein has moderate sequence similarity, conserved genomic organization, and near structural identity to members of the galectin superfamily, and it has been designated galectin-10. To definitively determine whether or not CLC protein is a lysophospholipase, we reassessed its enzymatic activity in peripheral blood eosinophils and an eosinophil myelocyte cell line (AML14.3D10). Antibody affinity chromatography was used to fully deplete CLC protein from eosinophil lysates. The CLC-depleted lysates retained their full lysophospholipase activity, and this activity could be blocked by sulfhydryl group-reactive inhibitors, N-ethylmaleimide and p-chloromercuribenzenesulfonate, previously reported to inhibit the eosinophil enzyme. In contrast, the affinity-purified CLC protein lacked significant lysophospholipase activity. X-ray crystallographic structures of CLC protein in complex with the inhibitors showed that p-chloromercuribenzenesulfonate bound CLC protein via disulfide bonds with Cys(29) and with Cys(57) near the carbohydrate recognition domain (CRD), whereas N-ethylmaleimide bound to the galectin-10 CRD via ring stacking interactions with Trp(72), in a manner highly analogous to mannose binding to this CRD. Antibodies to rat pancreatic lysophospholipase identified a protein in eosinophil and AML14.3D10 cell lysates, comparable in size with human pancreatic lysophospholipase, which co-purifies in small quantities with CLC protein. Ligand blotting of human and murine eosinophil lysates with CLC protein as probe showed that it binds proteins also recognized by antibodies to pancreatic lysophospholipase. Our results definitively show that CLC protein is not one of the eosinophil's lysophospholipases but that it does interact with eosinophil lysophospholipases and known inhibitors of this lipolytic activity.

摘要

夏科-莱登晶体(CLC)蛋白最初被报道具有微弱的溶血磷脂酶活性,至今仍被认为是嗜酸性粒细胞的溶血磷脂酶,但它与任何已知的溶血磷脂酶均无序列相似性。相反,CLC蛋白与半乳糖凝集素超家族成员具有适度的序列相似性、保守的基因组结构以及近乎相同的结构,因此被命名为半乳糖凝集素-10。为了明确CLC蛋白是否为溶血磷脂酶,我们重新评估了其在外周血嗜酸性粒细胞和嗜酸性粒细胞髓系细胞系(AML14.3D10)中的酶活性。采用抗体亲和层析法从嗜酸性粒细胞裂解物中完全去除CLC蛋白。去除CLC的裂解物仍保留其全部溶血磷脂酶活性,且该活性可被巯基反应性抑制剂N-乙基马来酰胺和对氯汞苯磺酸盐阻断,此前报道这两种抑制剂可抑制嗜酸性粒细胞酶。相反,亲和纯化的CLC蛋白缺乏显著的溶血磷脂酶活性。与抑制剂复合的CLC蛋白的X射线晶体结构表明,对氯汞苯磺酸盐通过与半乳糖凝集素-10碳水化合物识别结构域(CRD)附近的半胱氨酸(Cys)29和半胱氨酸57形成二硫键与CLC蛋白结合,而N-乙基马来酰胺通过与色氨酸(Trp)72的环堆积相互作用与半乳糖凝集素-10的CRD结合,其方式与甘露糖与该CRD结合高度相似。针对大鼠胰腺溶血磷脂酶的抗体在嗜酸性粒细胞和AML14.3D10细胞裂解物中鉴定出一种蛋白,其大小与人胰腺溶血磷脂酶相当,且与CLC蛋白少量共纯化。以CLC蛋白为探针,对人和小鼠嗜酸性粒细胞裂解物进行配体印迹分析表明,它还能结合可被胰腺溶血磷脂酶抗体识别的蛋白。我们的结果明确表明,CLC蛋白不是嗜酸性粒细胞的溶血磷脂酶之一,但它确实与嗜酸性粒细胞溶血磷脂酶及这种脂解活性的已知抑制剂相互作用。

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