Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States.
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824, United States.
Biochemistry. 2023 Apr 4;62(7):1262-1273. doi: 10.1021/acs.biochem.2c00612. Epub 2023 Mar 22.
The ancient protein TSPO (translocator protein 18kD) is found in all kingdoms and was originally identified as a binding site of benzodiazepine drugs. Its physiological function remains unclear, although porphyrins are conserved ligands. Several crystal structures of bacterial TSPO and nuclear magnetic resonance structures of a mouse form have revealed monomer and dimer configurations, but there have been no reports of structures with a physiological ligand. Here, we present the first X-ray structures of TSPO with a physiological ligand bound. Two different variants (substituting threonine for alanine at position 139 (A139T) and phenylalanine for alanine at position 138 (A138F)) yielded well-diffracting crystals giving structures of both apo- and heme-containing forms. Both variants have wild-type micromolar affinity for heme and protoporphyrin IX, but A139T has very low ability to accelerate the breakdown of porphyrin in the presence of light and oxygen. The binding of heme to one protomer of the dimer of either mutant induces a more rigid structure, both in the heme-binding protomer and the protomer without heme bound, demonstrating an allosteric response. Ensemble refinement of the X-ray data reveals distinct regions of altered flexibility in response to single heme binding to the dimer. The A139T variant shows a more rigid structure overall, which may relate to extra hydrogen bonding of waters captured in the heme crevice. As TSPO has been suggested to have a role in heme delivery from mitochondria to the cytoplasm, the new structures provide potential clues regarding the structural basis of such activity.
古老的蛋白质 TSPO(转位蛋白 18kD)存在于所有生物界,最初被鉴定为苯二氮䓬类药物的结合位点。尽管卟啉类是保守的配体,但它的生理功能仍不清楚。几种细菌 TSPO 的晶体结构和小鼠形式的核磁共振结构揭示了单体和二聚体构象,但尚未有报道具有生理配体的结构。在这里,我们首次展示了与生理配体结合的 TSPO 的 X 射线结构。两种不同的变体(在位置 139 用苏氨酸取代丙氨酸(A139T)和在位置 138 用苯丙氨酸取代丙氨酸(A138F))产生了具有良好衍射的晶体,得到了apo 和血红素结合形式的结构。两种变体对血红素和原卟啉 IX 的亲和力均为野生型微摩尔级,但 A139T 在光照和氧气存在下加速卟啉分解的能力非常低。血红素结合到任一突变体二聚体的一个单体上,诱导二聚体中血红素结合单体和无血红素结合单体的结构更加刚性,表明存在别构响应。X 射线数据的整体精修揭示了在单体上结合单个血红素后,柔性发生改变的特定区域。A139T 变体总体上显示出更刚性的结构,这可能与血红素裂隙中捕获的水分子的额外氢键有关。由于 TSPO 被认为在从线粒体向细胞质输送血红素方面具有作用,因此新结构为这种活性的结构基础提供了潜在的线索。