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Editors Choice: Stable expression and characterization of N-terminal tagged recombinant human bone morphogenetic protein 15

机译:编辑推荐:N末端标记的重组人骨形态发生蛋白15的稳定表达和表征

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摘要

Oocyte-derived growth factors are critically involved in multiple ovarian processes via paracrine actions. Although recombinant proteins have been applied to dissect the physiological functions of these factors, variation of activities among different protein preparations remains an issue. To further elucidate the roles of one of these growth factors, bone morphogenetic protein 15 (BMP15), in mediating oocyte-regulated molecular and cellular events and to explore its potential clinical application, we engineered the human BMP15 sequence to efficiently produce bioactive recombinant human BMP15 (rhBMP15). The proteolytic cleavage site of the hBMP15 precursor was optimized to facilitate the production of the mature protein, and a FLAG-tag was placed at the N-terminus of the mature region to ease purification and avoid potential interference of the tag with the cystine knot structure. The rhBMP15 protein was purified using anti-FLAG M2 affinity gel. Our results demonstrated that the N-terminal tagged rhBMP15 was efficiently processed in HEK-293 cells. Furthermore, the purified rhBMP15 could activate SMAD1/5/8 and induce the transcription of genes encoding cumulus expansion-related transcripts (Ptx3, Has2, Tnfaip6 and Ptgs2), inhibitory SMADs (Smad6 and Smad7), BMP antagonists (Grem1 and Fst), activin/inhibin βA (Inhba) and βB (Inhbb) subunits, etc. Thus, our rhBMP15 containing a genetically modified cleavage sequence and an N-terminal FLAG-tag can be efficiently produced, processed and secreted in a mammalian expression system. The purified rhBMP15 is also biologically active and very stable, and can induce the expression of a variety of mouse granulosa cell genes.
机译:卵母细胞生长因子通过旁分泌作用关键地参与多个卵巢过程。尽管重组蛋白已被用于剖析这些因子的生理功能,但不同蛋白制品之间的活性变化仍然是一个问题。为了进一步阐明这些生长因子之一,骨形态发生蛋白15(BMP15)在介导卵母细胞调节的分子和细胞事件中的作用,并探讨其潜在的临床应用,我们设计了人BMP15序列,以有效地产生具有生物活性的重组人BMP15 (rhBMP15)。优化了hBMP15前体的蛋白水解切割位点,以促进成熟蛋白的产生,并将FLAG标签置于成熟区域的N端,以简化纯化并避免标签对胱氨酸结结构的潜在干扰。使用抗FLAG M2亲和凝胶纯化rhBMP15蛋白。我们的结果表明,N末端标记的rhBMP15在HEK-293细胞中得到了有效处理。此外,纯化的rhBMP15可以激活SMAD1 / 5/8并诱导编码卵丘扩展相关转录本(Ptx3,Has2,Tnfaip6和Ptgs2),抑制性SMAD(Smad6和Smad7),BMP拮抗剂(Grem1和Fst),激活素/抑制素βA(Inhba)和βB(Inhbb)亚基等。因此,我们的rhBMP15含有经过基因修饰的切割序列和N端FLAG标签,可以在哺乳动物表达系统中高效生产,加工和分泌。纯化的rhBMP15也具有生物活性且非常稳定,并且可以诱导多种小鼠颗粒细胞基因的表达。

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