Department of Biology, Texas A&M University, College Station, Texas 77843-3258, USA.
J Bacteriol. 2011 Jan;193(1):82-90. doi: 10.1128/JB.00953-10. Epub 2010 Sep 24.
Transmembrane helix 2 (TM2) of the Tar chemoreceptor undergoes an inward piston-like displacement of 1 to 3 Å upon binding aspartate. This signal is transmitted to the kinase-control module via the HAMP domain. Within Tar, the HAMP domain forms a parallel four-helix bundle consisting of a dimer of two amphipathic helices connected by a flexible linker. In the nuclear magnetic resonance structure of an archaeal HAMP domain, residues corresponding to the MLLT sequence between Arg-214 at the end of TM2 and Pro-219 of Tar are an N-terminal helical extension of AS1. We modified this region to test whether it behaves as a continuous helical connection between TM2 and HAMP. First, one to four Gly residues were inserted between Thr-218 and Pro-219. Second, the MLLT sequence was replaced with one to nine Gly residues. Third, the sequence was shortened or extended with residues compatible with helix formation. Cells expressing receptors in which the MLLT sequence was shortened to MLL or in which the MLLT sequence was replaced by four Gly residues performed good aspartate chemotaxis. Other mutant receptors supported diminished aspartate taxis. Most mutant receptors had biased signal outputs and/or abnormal patterns of adaptive methylation. We interpret these results to indicate that a strong, permanent helical connection between TM2 and the HAMP domain is not necessary for normal transmembrane signaling.
跨膜螺旋 2(TM2)在与天冬氨酸结合时会发生 1 到 3Å 的内向活塞式位移。该信号通过 HAMP 结构域传递到激酶控制模块。在 Tar 中,HAMP 结构域形成一个平行的四螺旋束,由两个两亲性螺旋组成的二聚体通过柔性接头连接而成。在古细菌 HAMP 结构域的核磁共振结构中,对应于 TM2 末端的 Arg-214 和 Tar 的 Pro-219 之间的 MLLT 序列的残基是 AS1 的 N 端螺旋延伸。我们修饰了该区域,以测试它是否表现为 TM2 和 HAMP 之间的连续螺旋连接。首先,在 Thr-218 和 Pro-219 之间插入一个到四个 Gly 残基。其次,用一个到九个 Gly 残基替换 MLLT 序列。第三,用与螺旋形成相容的残基缩短或延长序列。表达将 MLLT 序列缩短为 MLL 或用四个 Gly 残基替换 MLLT 序列的受体的细胞进行良好的天冬氨酸趋化性。其他突变受体支持天冬氨酸趋化性减弱。大多数突变受体具有偏向的信号输出和/或异常的适应性甲基化模式。我们将这些结果解释为表明 TM2 和 HAMP 结构域之间的强、永久螺旋连接对于正常的跨膜信号传递不是必需的。