Lamson David R, House Alan J, Danshina Polina V, Sexton Jonathan Z, Sanyang Khaddijatou, O'Brien Deborah A, Yeh Li-An, Williams Kevin P
Biomanufacturing Research Institute and Technology Enterprise, North Carolina Central University, Durham, NC 27707, USA.
Protein Expr Purif. 2011 Jan;75(1):104-13. doi: 10.1016/j.pep.2010.09.003. Epub 2010 Sep 7.
The sperm-specific glyceraldehyde-3-phosphate dehydrogenase (GAPDHS) isoform is a promising contraceptive target because it is specific to male germ cells, essential for sperm motility and male fertility, and well suited to pharmacological inhibition. However, GAPDHS is difficult to isolate from native sources and recombinant expression frequently results in high production of insoluble enzyme. We chose to use the Bac-to-Bac baculovirus-insect cell system to express a His-tagged form of human GAPDHS (Hu his-GAPDHS) lacking the proline-rich N-terminal sequence. This recombinant Hu his-GAPDHS was successfully produced in Spodoptera frugiperda 9 (Sf9) cells by infection with recombinant virus as a soluble, enzymatically active form in high yield, >35 mg/L culture. Biochemical characterization of the purified enzyme by mass spectrometry and size exclusion chromatography confirmed the presence of the tetrameric form. Further characterization by peptide ion matching mass spectrometry and Edman sequencing showed that unlike the mixed tetramer forms produced in bacterial expression systems, human his-GAPDHS expressed in baculovirus-infected insect cells is homotetrameric. The ability to express and purify active human GAPDHS as homotetramers in high amounts will greatly aid in drug discovery efforts targeting this enzyme for discovery of novel contraceptives and three compounds were identified as inhibitors of Hu his-GAPDHS from a pilot screen of 1120 FDA-approved compounds.
精子特异性甘油醛-3-磷酸脱氢酶(GAPDHS)同工型是一个很有前景的避孕靶点,因为它对雄性生殖细胞具有特异性,对精子活力和男性生育能力至关重要,并且非常适合进行药理学抑制。然而,GAPDHS很难从天然来源中分离出来,重组表达经常导致不溶性酶的高产量。我们选择使用杆状病毒-昆虫细胞系统来表达一种缺少富含脯氨酸的N端序列的人GAPDHS(Hu his-GAPDHS)的His标签形式。通过用重组病毒感染,这种重组Hu his-GAPDHS在草地贪夜蛾9(Sf9)细胞中成功产生,以可溶性、具有酶活性的形式高产,产量>35 mg/L培养物。通过质谱和尺寸排阻色谱对纯化酶进行生化表征,证实了四聚体形式的存在。通过肽离子匹配质谱和埃德曼测序进一步表征表明,与细菌表达系统中产生的混合四聚体形式不同,杆状病毒感染的昆虫细胞中表达的人his-GAPDHS是同型四聚体。能够大量表达和纯化活性人GAPDHS同型四聚体将极大地有助于针对该酶发现新型避孕药的药物研发工作,并且从1120种FDA批准的化合物的初步筛选中鉴定出三种化合物作为Hu his-GAPDHS 的抑制剂。