Proteolysis Lab; Structural Biology Unit; "María-de-Maeztu" Unit of Excellence, Molecular Biology Institute of Barcelona (CSIC); Barcelona Science Park, c/Baldiri Reixac, 15-21, 08028, Barcelona, Catalonia, Spain.
Sci Rep. 2019 Jun 17;9(1):8660. doi: 10.1038/s41598-019-44943-4.
Transforming growth factor β is a disulfide-linked dimeric cytokine that occurs in three highly related isoforms (TGFβ1-TGFβ3) engaged in signaling functions through binding of cognate TGFβ receptors. To regulate this pathway, the cytokines are biosynthesized as inactive pro-TGFβs with an N-terminal latency-associated protein preceding the mature moieties. Due to their pleiotropic implications in physiology and pathology, TGFβs are privileged objects of in vitro studies. However, such studies have long been limited by the lack of efficient human recombinant expression systems of native, glycosylated, and homogenous proteins. Here, we developed pro-TGFβ2 production systems based on human Expi293F cells, which yielded >2 mg of pure histidine- or Strep-tagged protein per liter of cell culture. We assayed this material biophysically and in crystallization assays and obtained a different crystal form of mature TGFβ2, which adopted a conformation deviating from previous structures, with a distinct dimeric conformation that would require significant rearrangement for binding of TGFβ receptors. This new conformation may be reversibly adopted by a certain fraction of the mature TGβ2 population and represent a hitherto undescribed additional level of activity regulation of the mature growth factor once the latency-associated protein has been separated.
转化生长因子β是一种二硫键连接的二聚体细胞因子,有三种高度相关的同工型(TGFβ1-TGFβ3),通过与同源 TGFβ 受体结合发挥信号转导功能。为了调节这条通路,细胞因子以无活性的前体 TGFβ 形式生物合成,前体 TGFβ 由成熟片段前端的 N 端潜伏相关蛋白(LAP)先导。由于它们在生理和病理方面具有多效性,TGFβ 成为体外研究的重要对象。然而,由于缺乏天然、糖基化和同质蛋白的高效人重组表达系统,此类研究长期以来受到限制。在这里,我们基于人 Expi293F 细胞开发了前体 TGFβ2 生产系统,每升细胞培养物可产生超过 2mg 的纯组氨酸或 Strep 标记蛋白。我们对该材料进行了生物物理和结晶分析测试,获得了成熟 TGFβ2 的不同晶体形式,该形式采用了偏离先前结构的构象,具有独特的二聚体构象,这将需要 TGFβ 受体的结合发生显著重排。这种新构象可能是成熟 TGβ2 群体中的特定部分可逆地采用的,并且一旦分离出潜伏相关蛋白,代表了成熟生长因子活性调节的一个迄今未描述的附加水平。