Favre D, Karamata D, Mendelson N H
J Bacteriol. 1985 Dec;164(3):1141-5. doi: 10.1128/jb.164.3.1141-1145.1985.
Macrofibers in steady-state growth at one temperature were subjected to pulses of various durations at a temperature at which the opposite helix hand would form and then returned to the initial temperature. In an upshift pulse (20 to 48 degrees C), at least 3 min of incubation was required to induce a transient inversion that occurred later after return to 20 degrees C. Longer pulses resulted in shorter delays in onset of the transient inversion. This "memory" of a brief high-temperature pulse suggests that even a small amount of material can influence the twist of the entire macrofiber. Similar results were found for temperature downshift pulses corresponding to the opposite inversion. Adding chloramphenicol during the temperature pulse blocked the establishment of memory associated with the right-to-left inversion but not that associated with left-to-right inversion. In contrast, inhibiting peptidoglycan synthesis with D-cycloserine during the temperature pulse did not prevent establishment of memory. Inhibiting protein synthesis in mutants fixed as left-handed structures over the entire temperature range induced conversion to right-handedness but did not affect mutants fixed as right-handed structures. Adding protease to either live or formaldehyde-killed macrofibers always induced rotations of right-handed orientation. Steady-state growth in the presence of protease was found to shift the initial macrofiber twist towards the right-hand end of the twist spectrum. The phenomenon was observed in several mutants with different initial twists.
将在某一温度下处于稳态生长的大纤维置于另一温度下,该温度会使大纤维形成相反的螺旋方向,施加不同持续时间的脉冲,然后再回到初始温度。在升温脉冲(20至48摄氏度)中,至少需要3分钟的孵育时间才能诱导出短暂的反转,该反转在回到20摄氏度后出现得更晚。脉冲时间越长,短暂反转开始的延迟越短。这种对短暂高温脉冲的“记忆”表明,即使是少量物质也能影响整个大纤维的扭曲。对于对应相反反转的降温脉冲,也发现了类似结果。在温度脉冲期间添加氯霉素会阻止与从右到左反转相关的记忆形成,但不会阻止与从左到右反转相关的记忆形成。相比之下,在温度脉冲期间用D-环丝氨酸抑制肽聚糖合成并不能阻止记忆的形成。在整个温度范围内抑制固定为左手结构的突变体中的蛋白质合成会诱导其转变为右手结构,但不会影响固定为右手结构的突变体。向活的或经甲醛处理灭活的大纤维中添加蛋白酶总是会诱导右手方向的旋转。发现在蛋白酶存在下的稳态生长会使初始大纤维的扭曲向扭曲谱的右手端偏移。在几个具有不同初始扭曲的突变体中都观察到了这种现象。