Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI, USA.
Department of Chemistry, Michigan State University, East Lansing, MI, USA.
Nat Commun. 2023 Jan 24;14(1):385. doi: 10.1038/s41467-023-36048-4.
The Zrt-/Irt-like protein (ZIP) family consists of ubiquitously expressed divalent metal transporters critically involved in maintaining systemic and cellular homeostasis of zinc, iron, and manganese. Here, we present a study on a prokaryotic ZIP from Bordetella bronchiseptica (BbZIP) by combining structural biology, evolutionary covariance, computational modeling, and a variety of biochemical assays to tackle the issue of the transport mechanism which has not been established for the ZIP family. The apo state structure in an inward-facing conformation revealed a disassembled transport site, altered inter-helical interactions, and importantly, a rigid body movement of a 4-transmembrane helix (TM) bundle relative to the other TMs. The computationally generated and biochemically validated outward-facing conformation model revealed a slide of the 4-TM bundle, which carries the transport site(s), by approximately 8 Å toward the extracellular side against the static TMs which mediate dimerization. These findings allow us to conclude that BbZIP is an elevator-type transporter.
Zrt-/Irt 样蛋白(ZIP)家族由广泛表达的二价金属转运蛋白组成,这些蛋白在维持锌、铁和锰的全身和细胞内稳态方面起着至关重要的作用。在这里,我们通过结合结构生物学、进化共变、计算建模和各种生化分析,研究了博德特氏菌(Bordetella bronchiseptica)中的原核 ZIP(BbZIP),以解决尚未建立的 ZIP 家族的运输机制问题。在面向内的构象中,apo 状态结构揭示了一个解体的运输部位,改变了螺旋间相互作用,重要的是,一个 4 次跨膜螺旋(TM)束相对于其他 TM 的刚体运动。通过计算生成并通过生化验证的外向构象模型揭示了 4-TM 束的滑动,该滑动通过大约 8 Å 朝向细胞外侧,与介导二聚化的静态 TM 相对,从而携带运输部位(多个)。这些发现使我们能够得出结论,BbZIP 是一种提升式转运体。