Weber K, Geisler N, Plessmann U, Bremerich A, Lechtreck K F, Melkonian M
Max Planck Institute for Biophysical Chemistry, Department of Biochemistry, Goettingen, Federal Republic of Germany.
J Cell Biol. 1993 May;121(4):837-45. doi: 10.1083/jcb.121.4.837.
The microtubule associated system I fibers of the basal apparatus of the flagellate green alga Spermatozopsis similis are noncontractile and display a 28-nm periodicity. Paracrystals with similar periodicities are formed in vitro by SF-assemblin, which is the major protein component of system I fibers. We have determined the amino acid sequence of SF-assemblin and show that it contains two structural domains. The NH2-terminal 31 residues form a nonhelical domain rich in proline. The rod domain of 253 residues is alpha-helical and seems to form a segmented coiled coil with a 29-residue repeat pattern based on four heptads followed by a skip residue. The distinct cluster of acidic residues at the COOH-terminal end of the motifs (periodicity about 4 nm) may be related to tubulin binding of SF-assemblin and/or its self assembly. A similar structure has been predicted from cDNA cloning of beta-giardin, a protein of the complex microtubular apparatus of the sucking disc in the protozoan flagellate Giardia lamblia. Although the rod domains of SF-assemblin and beta-giardin share only 20% sequence identity, they have exactly the same length and display 42% sequence similarity. These results predict that system I fibers and related microtubule associated structures arise from molecules able to form a special segmented coiled coil which can pack into 2-nm filaments. Such molecules seem subject to a strong evolutionary drift in sequence but not in sequence principles and length. This conservation of molecular architecture may have important implications for microtubule binding.
鞭毛绿藻相似精子藻基部装置的微管相关系统I纤维不具收缩性,呈现28纳米的周期性。体外由SF装配蛋白形成具有相似周期性的副晶体,SF装配蛋白是系统I纤维的主要蛋白质成分。我们已确定SF装配蛋白的氨基酸序列,并表明它包含两个结构域。氨基末端的31个残基形成富含脯氨酸的非螺旋结构域。253个残基的杆状结构域是α螺旋的,似乎形成了一个分段的卷曲螺旋,具有基于四个七肽后跟一个间隔残基的29个残基重复模式。基序COOH末端的酸性残基独特簇(周期性约4纳米)可能与SF装配蛋白的微管蛋白结合和/或其自组装有关。从原生动物鞭毛虫贾第虫吸盘复杂微管装置的一种蛋白质β贾第素的cDNA克隆中预测到了类似的结构。尽管SF装配蛋白和β贾第素的杆状结构域仅共享20%的序列同一性,但它们具有完全相同的长度,并显示出42%的序列相似性。这些结果预测,系统I纤维和相关的微管相关结构起源于能够形成特殊分段卷曲螺旋的分子,这种卷曲螺旋可以堆积成2纳米的细丝。这类分子在序列上似乎经历了强烈的进化漂移,但在序列原则和长度上没有。这种分子结构的保守性可能对微管结合具有重要意义。