Jung H
Universität Osnabrück, Fachbereich Biologie/Chemie, Osnabrück, Germany.
Biochim Biophys Acta. 1998 Jun 10;1365(1-2):60-4. doi: 10.1016/s0005-2728(98)00044-9.
The Na+/proline transporter of Escherichia coli (PutP) is a member of the Na+/solute contransporter family (SCF) and catalyzes the uptake of proline by a Na+ dependent transport mechanism. Hydropathy profile analysis suggests that the protein consists of 12 transmembrane domains (TMs) that traverse the membrane in zigzag fashion connected by hydrophilic loops. However, analysis of a series of putP-phoA (PutP-alkaline phosphatase) and putP-lacZ (PutP-beta-galactosidase) fusions and site-directed labeling of the transporter indicate a 13-helix motif with the N-terminus on the outside and the C-terminus facing the cytoplasm. The findings are discussed with respect to a common topological motif for all members of the SCF. Furthermore, amino acid substitution analysis indicates that the N-terminal part of PutP is important for ion binding. Thus, Asp55 (putative TM II) is essential for transport and proposed to interact directly with Na+. The functional importance of TM II is further confirmed by the observation that replacement of Arg40, Ser50, Ala53, or Ser57 alters transport kinetics dramatically.
大肠杆菌的Na⁺/脯氨酸转运蛋白(PutP)是Na⁺/溶质共转运蛋白家族(SCF)的成员,通过Na⁺依赖性转运机制催化脯氨酸的摄取。亲水性分析表明,该蛋白由12个跨膜结构域(TMs)组成,这些结构域以锯齿状方式穿过膜,由亲水性环连接。然而,对一系列putP-phoA(PutP-碱性磷酸酶)和putP-lacZ(PutP-β-半乳糖苷酶)融合蛋白的分析以及对该转运蛋白的定点标记表明,它具有13螺旋基序,N端在外侧,C端面向细胞质。结合SCF所有成员的共同拓扑基序对这些发现进行了讨论。此外,氨基酸替代分析表明,PutP的N端部分对离子结合很重要。因此,Asp55(推定的跨膜结构域II)对转运至关重要,并被认为直接与Na⁺相互作用。跨膜结构域II的功能重要性通过以下观察结果进一步得到证实:Arg40、Ser50、Ala53或Ser57的替换会显著改变转运动力学。