Max Planck Institute of Biophysics, Structural Biology Department, Max-von-Laue-Strasse 3, D-60438 Frankfurt (Main), Germany.
Biol Chem. 2013 May;394(5):641-8. doi: 10.1515/hsz-2012-0336.
Secondary active transporters are of paramount biological impact in all living cells, facilitating the movement of many different substrates across the membrane against a concentration gradient. The uphill transport of one substrate is coupled to the downhill transport of another and driven by the electrochemical gradient. In the last decade, an increasing number of atomic structures of secondary transporters have been reported, confirming a very fundamental mechanistic concept known as the alternating-access cycle. The wealth of structures of transporters sharing the so-called LeuT-like fold that is characterized by two five-transmembrane-helix repeats sharing a 2-fold inverted pseudo symmetry has raised big hopes to finally describe alternating access on a molecular level. Although comparing the individual transporter states of different LeuT-like fold transporters revealed striking similarities, the coupling process, which represents the heart of secondary transport, is far from being understood. Here, we review the structural, functional, and biophysical validation of sodium-binding sites in four different LeuT-like fold transporters. The conservation of sodium sites is discussed in light of their role as key elements connecting symmetry-related structural domains, which are involved in substrate translocation. Moreover, we highlight their crucial roles in conformational changes of LeuT-like fold transporters and their implication on a unifying mechanism in secondary transport.
次级主动转运体在所有活细胞中都具有至关重要的生物学影响,它们促进了许多不同底物在膜中的跨膜运动,逆浓度梯度进行。一种底物的上坡运输与另一种底物的下坡运输偶联,并由电化学梯度驱动。在过去的十年中,越来越多的次级转运体的原子结构被报道,证实了一个非常基本的机制概念,即交替访问循环。大量具有所谓 LeuT 样折叠的转运体结构被共享,其特征是两个五跨膜螺旋重复序列共享 2 倍倒置伪对称,这大大提高了最终在分子水平上描述交替访问的希望。尽管比较不同 LeuT 样折叠转运体的单个转运体状态揭示了惊人的相似性,但代表次级转运核心的偶联过程远未被理解。在这里,我们回顾了四种不同 LeuT 样折叠转运体中钠离子结合位点的结构、功能和生物物理验证。钠离子结合位点的保守性是根据它们作为连接与对称相关的结构域的关键元素的作用来讨论的,这些结构域参与了底物的转运。此外,我们强调了它们在 LeuT 样折叠转运体构象变化中的关键作用及其在次级转运中统一机制的意义。