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大肠杆菌中渗透感应转运蛋白ProP的周质环对渗透压敏感。

Periplasmic loops of osmosensory transporter ProP in Escherichia coli are sensitive to osmolality.

作者信息

Culham Doreen E, Vernikovska Yaroslava, Tschowri Natalia, Keates Robert A B, Wood Janet M, Boggs Joan M

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.

出版信息

Biochemistry. 2008 Dec 23;47(51):13584-93. doi: 10.1021/bi801576x.

Abstract

ProP is an osmosensory transporter. The activities of ProP and ProP*, a cysteine-less, His(6)-tagged ProP variant, increase with osmotic pressure in cells and proteoliposomes. In proteoliposomes, ProP activity is osmolality-dependent only if the magnitude of the membrane potential (DeltaPsi) exceeds 100 mV. Some amino acid replacements rendered ProP activity osmolality-insensitive [e.g., Y44M in transmembrane segment 1 (TMI); S62C in periplasmic loop 1 (loop P1)], whereas others elevated the osmolality at which ProP activates (e.g., A59C). This suggested that the environments and/or conformations of TMI and loop P1 might be osmolality-dependent. This report correlates structural dynamics of ProP with osmoregulation of its transport activity. Residues in periplasmic loops were replaced with Cys, and changes in their environments were detected by monitoring their reactivities with N-ethylmaleimide (NEM). Increasing osmolality markedly increased the NEM reactivity of some Cys residues (e.g., C59, loop P1; C415-C418, loop P6) but not others (e.g., C293, loop P4; C348, loop P5). The NEM reactivity of C62 was insensitive to osmolality, as expected. Substitution Y44M rendered the transport activities of ProP*-A59C and ProP*-Q415C, and the NEM reactivities of the introduced Cys, osmolality-insensitive. Furthermore, osmolality did not affect the reactivity of C59 in cells lacking a protonmotive force, consistent with evidence that DeltaPsi is required for osmosensing by ProP. These results indicate that the osmotically induced increases in NEM reactivity of C59 and C415 in energized bacteria are due to a conformational change of ProP in response to osmolality. They therefore constitute the first direct evidence of an osmotically induced conformational change associated with osmosensing by a transporter.

摘要

ProP是一种渗透压感受器转运蛋白。ProP和ProP*(一种无半胱氨酸、带有His(6)标签的ProP变体)的活性会随着细胞和蛋白脂质体中的渗透压升高而增加。在蛋白脂质体中,只有当膜电位(ΔΨ)的幅度超过100 mV时,ProP的活性才依赖于重量克分子渗透压浓度。一些氨基酸替换使ProP活性对重量克分子渗透压浓度不敏感[例如,跨膜区段1(TMI)中的Y44M;周质环1(环P1)中的S62C],而其他替换则提高了ProP激活时的重量克分子渗透压浓度(例如,A59C)。这表明TMI和环P1的环境和/或构象可能依赖于重量克分子渗透压浓度。本报告将ProP的结构动力学与其转运活性的渗透调节相关联。用半胱氨酸替换周质环中的残基,并通过监测它们与N - 乙基马来酰亚胺(NEM)的反应性来检测其环境变化。渗透压升高显著增加了一些半胱氨酸残基(例如,环P1中的C59;环P6中的C415 - C418)与NEM的反应性,但其他残基(例如,环P4中的C293;环P5中的C348)则没有。正如预期的那样,C62与NEM的反应性对渗透压不敏感。Y44M替换使ProP* - A59C和ProP* - Q415C的转运活性以及引入的半胱氨酸与NEM的反应性对渗透压不敏感。此外,渗透压不影响缺乏质子动力势的细胞中C59的反应性,这与ProP进行渗透压感知需要ΔΨ的证据一致。这些结果表明,在有能量的细菌中,渗透压诱导的C59和C415与NEM反应性增加是由于ProP响应渗透压而发生的构象变化。因此,它们构成了与转运蛋白渗透压感知相关的渗透压诱导构象变化的首个直接证据。

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