Jaskula J C, Letain T E, Roof S K, Skare J T, Postle K
Department of Microbiology, Washington State University, Pullman 99164-4233.
J Bacteriol. 1994 Apr;176(8):2326-38. doi: 10.1128/jb.176.8.2326-2338.1994.
Escherichia coli TonB protein is an energy transducer, coupling cytoplasmic membrane energy to active transport of vitamin B12 and iron-siderophores across the outer membrane. TonB is anchored in the cytoplasmic membrane by its hydrophobic amino terminus, with the remainder occupying the periplasmic space. In this report we establish several functions for the hydrophobic amino terminus of TonB. A G-26-->D substitution in the amino terminus prevents export of TonB, suggesting that the amino terminus contains an export signal for proper localization of TonB within the cell envelope. Substitution of the first membrane-spanning domain of the cytoplasmic membrane protein TetA for the TonB amino terminus eliminates TonB activity without altering TonB export, suggesting that the amino terminus contains sequence-specific information. Detectable TonB cross-linking to ExbB is also prevented, suggesting that the two proteins interact primarily through their transmembrane domains. In vivo cleavage of the amino terminus of TonB carrying an engineered leader peptidase cleavage site eliminates (i) TonB activity, (ii) detectable interaction with a membrane fraction having a density intermediate to those of the cytoplasmic and outer membranes, and (iii) cross-linking to ExbB. In contrast, the amino terminus is not required for cross-linking to other proteins with which TonB can form complexes, including FepA. Additionally, although the amino terminus clearly is a membrane anchor, it is not the only means by which TonB associates with the cytoplasmic membrane. TonB lacking its amino-terminal membrane anchor still remains largely associated with the cytoplasmic membrane.
大肠杆菌的TonB蛋白是一种能量转换器,它将细胞质膜的能量与维生素B12和铁载体跨外膜的主动运输相偶联。TonB通过其疏水的氨基末端锚定在细胞质膜中,其余部分占据周质空间。在本报告中,我们确定了TonB疏水氨基末端的几种功能。氨基末端的G-26→D取代阻止了TonB的输出,这表明氨基末端包含一个用于TonB在细胞包膜内正确定位的输出信号。用细胞质膜蛋白TetA的第一个跨膜结构域取代TonB的氨基末端可消除TonB活性,而不会改变TonB的输出,这表明氨基末端包含序列特异性信息。可检测到的TonB与ExbB的交联也被阻止,这表明这两种蛋白质主要通过它们的跨膜结构域相互作用。对携带工程化前导肽酶切割位点的TonB氨基末端进行体内切割会消除:(i)TonB活性;(ii)与密度介于细胞质膜和外膜之间的膜部分的可检测相互作用;(iii)与ExbB的交联。相比之下,与TonB可以形成复合物的其他蛋白质(包括FepA)交联则不需要氨基末端。此外,尽管氨基末端显然是一个膜锚,但它不是TonB与细胞质膜结合的唯一方式。缺少其氨基末端膜锚的TonB仍然在很大程度上与细胞质膜相关联。