南方医科大学学报 ›› 2012, Vol. 32 ›› Issue (11): 1584-.

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重组人甘露聚糖结合凝集素三肽链亚单位的制备及其活性分析

雷鸣,童俊容,卢晓,张丽芸,左大明,陈政良   

  • 出版日期:2012-11-20 发布日期:2012-11-20

Preparation of the trimeric subunits of recombinant human mannan-binding lectin and analysis of its bioactivity

  • Online:2012-11-20 Published:2012-11-20

摘要: 目的制备具有生物学活性的重组人甘露聚糖结合凝集素三肽链亚单位(trhMBL)。方法我们先前已构建了N端缺失的
重组人甘露聚糖结合凝集素(rhMBL△N)基因的原核表达载体并在大肠杆菌中高效表达rhMBL△N融合蛋白。本实验利用胶
原蛋白的3条肽链依其自身性质而相互缠绕成三股螺旋、装配成三级结构的原理,首先以凝血酶酶切rhMBL融合蛋白,将获得
的单链rhMBL蛋白在50mmol/L PBS(pH7.2)和ddH2O中交替反复透析使之自动装配成trhMBL,最后以配体结合试验和C4d
沉淀试验对终产物trhMBL进行生物学活性分析。结果rhMBL融合蛋白经凝血酶酶切,获得相对分子质量约20000的
rhMBL单链蛋白;将其反复透析后得到相对分子质量约50000的rhMBL三肽链亚单位trhMBL;活性分析表明,该MBL亚单位
的配体结合活性比rhMBL△N肽链高,并获得了激活补体凝集素途径的活性,但这些活性比天然MBL低。结论成功获得了具
有生物学活性的重组人MBL三肽链亚单位;这种三肽链组织形式不仅是MBL的结构亚单位,而且是其功能亚单位。

Abstract: ObjectiveTo prepare the trimeric subunits of recombinant human mannan-binding lectin (MBL) with biological
activities. MethodsA prokaryotic expression vector containing human MBL N-terminal deletant (rhMBL△N) gene we
previously constructed was transformed intoE. colifor efficient expression of rhMBL△N fusion protein. Based on the
principle that the collagen polypeptides tend to self-assembly into the tertiary structure of proteins by forming a triple helix
due to the characteristic properties of the collagen proteins, rhMBL△N fusion protein was limitedly hydrolyzed with
thrombin. The obtained rhMBL△N polypeptide was repeatedly dialyzed in50mmol/L PBS (pH7.2) and ddH2O, and the final
product was analyzed for its bioactivities using a ligand-binding assay and a C4d deposition assay.ResultsrhMBL△N
polypeptide with a relative molecular mass of about20000was obtained by limited proteolysis of rhMBL△N fusion protein
with thrombin. Repeated dialyses of rhMBL△N polypeptides in50mmol/L PBS and ddH2O resulted in the isolation of the
trimeric subunit trhMBL△N (with a relative molecular mass of about50000), which contained a collagen-like helix. The
trhMBL△N protein had a higher ligand-binding activity than rhMBL△N polypeptide, and acquired the activity to initiate the
lectin pathway of complement activation, but the activities were lower than those of natural MBL. ConclusionWe have
successfully obtained the bioactive trimeric subunit of rhMBL, trhMBL△N, and this structural subunit is also the functional
subunit of the MBL molecule.