Crossley R, Holberton D V
J Cell Sci. 1983 Jan;59:81-103. doi: 10.1242/jcs.59.1.81.
Proteins from the axonemes and disc cytoskeleton of Giardia lamblia have been examined by sodium dodecyl sulphate/polyacrylamide gel electrophoresis. In addition to tubulin and the 30 X 10(3) molecular weight disc protein, at least 18 minor components copurify with the two major proteins in Triton-insoluble structures. The most prominent minor bands have the apparent molecular weights of 110 X 10(3), 95 X 10(3) and 81 X 10(3). Protein of 30 X 10(3) molecular weight accounts for about 20% of organelle protein on gels. In continuous 25 mM-Tris-glycine buffer it migrates mostly as a close-spaced doublet of polypeptides, which are here given the name giardins. Giardia tubulin and giardin have been purified by gel filtration chromatography in the presence of sodium dodecyl sulphate. Well-separated fractions were obtained that could be further characterized. Both proteins are heterogeneous when examined by isoelectric focusing. Five tubulin chains were detected by PAGE Blue 83 dye-binding after focusing in a broad-range ampholyte gel. Giardin is slightly less acidic than tubulin. On gels it splits into four major and four minor chains with isoelectric points in the pI range from 5.8 to 6.2. The amino acid composition of the giardin fraction has been determined, and compared to Giardia tubulin and a rat brain tubulin standard. Giardins are rich in helix-forming residues, particularly leucine. They have a low content of proline and glycine; therefore they may have extensive alpha-helical regions and be rod-shaped. As integral proteins of disc microribbons, giardins in vivo associate closely with tubulin. The properties of giardins indicate that in a number of respects - molecular size, charge, stoichiometry - their structural interaction with tubulin assemblies will be different from other tubulin-accessory protein copolymers studied in vitro.
通过十二烷基硫酸钠/聚丙烯酰胺凝胶电泳对蓝氏贾第鞭毛虫轴丝和盘状细胞骨架中的蛋白质进行了检测。除微管蛋白和分子量为30×10³的盘状蛋白外,在Triton不溶性结构中,至少有18种次要成分与这两种主要蛋白共同纯化。最显著的次要条带的表观分子量分别为110×10³、95×10³和81×10³。分子量为30×10³的蛋白质在凝胶上约占细胞器蛋白质的20%。在连续的25mM Tris-甘氨酸缓冲液中,它主要以紧密间隔的多肽双峰形式迁移,此处将其命名为贾第蛋白。蓝氏贾第鞭毛虫微管蛋白和贾第蛋白已在十二烷基硫酸钠存在下通过凝胶过滤色谱法纯化。获得了分离良好的组分,可对其进行进一步表征。通过等电聚焦检测时,这两种蛋白质都是异质的。在宽范围两性电解质凝胶中聚焦后,通过PAGE Blue 83染料结合检测到五条微管蛋白链。贾第蛋白的酸性略低于微管蛋白。在凝胶上,它可分为四条主要链和四条次要链,等电点在pI范围为5.8至6.2。已确定了贾第蛋白组分的氨基酸组成,并与蓝氏贾第鞭毛虫微管蛋白和大鼠脑微管蛋白标准品进行了比较。贾第蛋白富含形成螺旋的残基,尤其是亮氨酸。它们的脯氨酸和甘氨酸含量较低;因此它们可能具有广泛的α-螺旋区域并且呈杆状。作为盘状微丝带的整合蛋白,贾第蛋白在体内与微管蛋白紧密结合。贾第蛋白的特性表明,在许多方面——分子大小、电荷、化学计量——它们与微管蛋白组装体的结构相互作用将不同于体外研究的其他微管蛋白辅助蛋白共聚物。