Kamiya R, Hotani H, Asakura S
Symp Soc Exp Biol. 1982;35:53-76.
The basic structure of the shaft of the bacterial flagellum is described and an account is given of work on polymorphism to date. The flagellum of wild-type Salmonella SJ670 has a characteristic left-hand helical form from pH 8 to pH 6, but undergoes two sharp transitions to other definite forms as the pH is lowered. The first transition, to a tight coil, can be followed by flow-birefringence. The flow-birefringence curve shows no evidence of hysteresis. Other details of the polymorphism, including the transitions which occur at high pH and at various KCl concentrations, are shown in a 'phase diagram'. Details of the transformation were studied by observing individual reconstituted flagella under dark-field light microscopy, while varying the bathing medium. Under some conditions, stress due to flow of the medium influences the transition. Under constant flow, alteration between two helical forms of opposite hand was sometimes observed. The two-state model is introduced to account for the helical structure and the polymorphism. Its prediction, that the two possible straight forms should have definite and opposite values of twist, is shown to agree with optical diffraction studies. Certain straight mutants are mentioned which show a novel feature in the diffraction pattern, probably due to a periodic perturbation of the helical lattice. The co-polymerisation of flagellins from straight mutants of the two different types yields a range of forms similar to the natural polymorphs. The implications of this finding are discussed.
描述了细菌鞭毛杆部的基本结构,并介绍了迄今为止关于多态性的研究工作。野生型沙门氏菌SJ670的鞭毛在pH值从8到6时呈典型的左旋螺旋形式,但随着pH值降低会经历两次急剧转变,变为其他确定的形式。第一次转变为紧密螺旋,可以通过流动双折射来追踪。流动双折射曲线没有滞后现象的证据。多态性的其他细节,包括在高pH值和各种氯化钾浓度下发生的转变,在“相图”中显示。通过在暗视野光学显微镜下观察单个重组鞭毛,同时改变浸泡介质,研究了转变的细节。在某些条件下,介质流动产生的应力会影响转变。在恒定流动下,有时会观察到两种相反旋向的螺旋形式之间的交替。引入双态模型来解释螺旋结构和多态性。其预测,即两种可能的直线形式应该具有确定且相反的扭转值,与光学衍射研究结果一致。提到了某些直线突变体,它们在衍射图案中显示出一种新特征,可能是由于螺旋晶格的周期性扰动。来自两种不同类型直线突变体的鞭毛蛋白的共聚产生了一系列类似于天然多晶型物的形式。讨论了这一发现的意义。