天然和重组形式的神经营养细胞因子MK的结构特征。

L Fabri, H Maruta, H Muramatsu, T Muramatsu, R J Simpson, A W Burgess, E C Nice
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引用次数: 67

摘要

维甲酸(RA)诱导midkine (MK)基因编码一种肝素结合蛋白,可诱导培养的哺乳动物胚胎脑细胞神经突生长。该细胞因子与另一种ra诱导的细胞因子多效蛋白(PTN)有65%的氨基酸序列相同。这两种蛋白质都含有10个保守的半胱氨酸残基,它们似乎都是二硫连接的。MK和PTN也富含赖氨酸和精氨酸残基,使得它们在纯化过程中容易被蛋白水解,这使得这些分子的大规模制备本身就很困难。重组MK已通过pGEX载体转染大肠杆菌表达为融合蛋白。为了使MK能够重新折叠,融合蛋白在4℃的溶液中在二硫苏糖醇(DTT)存在下保存14天。凝血酶裂解融合蛋白,储存后,通常每升细菌颗粒产生5mg MK。为了确定重组产物的结构完整性,我们分析了重组MK的重折叠动力学,并将重组MK与天然MK和天然PTN的二硫键分配进行了比较。利用微制备高效液相色谱(HPLC)、基质辅助激光解吸质谱(MALD-MS)和n端序列分析的协同作用,分离和回收小洗脱液体积的酶衍生肽片段,使天然MK和重组MK的二硫键片段得到明确的鉴定。MK的二硫键分配为C12-C36、C20-C45、C27-C49、C59-C91和C69-C101,与PTN相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural characterisation of native and recombinant forms of the neurotrophic cytokine MK.

The retinoic acid (RA)-inducible midkine (MK) gene encodes a heparin-binding protein which can induce neurite outgrowth in cultured mammalian embryonic brain cells. This cytokine shares 65% amino acid sequence identity with another RA-inducible cytokine, pleiotropin (PTN). Both proteins contain 10 conserved cysteine residues, all of which appear to be disulphide linked. MK and PTN are also rich in lysine and arginine residues rendering them susceptible to proteolysis during purification, and making large-scale preparation of these molecules inherently difficult. Recombinant MK has been expressed as a fusion protein using a pGEX vector transfected into E. coli. To enable refolding of MK, the fusion protein was stored in solution at 4 degrees C for 14 days in the presence of dithiothreitol (DTT). Thrombin cleavage of the fusion protein, post storage, typically generated 5 mg of MK per litre of bacterial pellet. To establish the structural integrity of the recombinant product, we have analysed the refolding kinetics and compared the disulphide bond assignment of recombinant MK with that of native MK and native PTN. The synergistic use of micropreparative HPLC, to separate and recover in small eluant volumes enzymatically derived peptide fragments, with matrix assisted laser desorption mass spectrometry (MALD-MS) and N-terminal sequence analysis has allowed the unambiguous identification of the disulphide bonded fragments of native and recombinant MK. The disulphide bond assignment of MK is C12-C36, C20-C45, C27-C49, C59-C91 and C69-C101, and is equivalent to that of PTN.

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