Zhu Zhiqing C, Gupta Kamlesh K, Slabbekoorn Aranda R, Paulson Benjamin A, Folker Eric S, Goodson Holly V
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.
J Biol Chem. 2009 Nov 20;284(47):32651-61. doi: 10.1074/jbc.M109.013466. Epub 2009 Sep 23.
Plus end tracking proteins (+TIPs) are a unique group of microtubule binding proteins that dynamically track microtubule (MT) plus ends. EB1 is a highly conserved +TIP with a fundamental role in MT dynamics, but it remains poorly understood in part because reported EB1 activities have differed considerably. One reason for this inconsistency could be the variable presence of affinity tags used for EB1 purification. To address this question and establish the activity of native EB1, we have measured the MT binding and tubulin polymerization activities of untagged EB1 and EB1 fragments and compared them with those of His-tagged EB1 proteins. We found that N-terminal His tags directly influence the interaction between EB1 and MTs, significantly increasing both affinity and activity, and that small amounts of His-tagged proteins act synergistically with larger amounts of untagged proteins. Moreover, the binding ratio between EB1 and tubulin can exceed 1:1, and EB1-MT binding curves do not fit simple binding models. These observations demonstrate that EB1 binding is not limited to the MT seam, and they suggest that EB1 binds cooperatively to MTs. Finally, we found that removal of tubulin C-terminal tails significantly reduces EB1 binding, indicating that EB1-tubulin interactions are mediated in part by the same tubulin acidic tails utilized by other MAPs. These binding relationships are important for helping to elucidate the complex of proteins at the MT tip.
正端追踪蛋白(+TIPs)是一类独特的微管结合蛋白,可动态追踪微管(MT)的正端。EB1是一种高度保守的+TIP,在微管动力学中起重要作用,但目前对其了解仍很有限,部分原因是报道的EB1活性差异很大。这种不一致的一个原因可能是用于EB1纯化的亲和标签存在差异。为了解决这个问题并确定天然EB1的活性,我们测量了无标签EB1和EB1片段的微管结合和微管蛋白聚合活性,并将它们与His标签化的EB1蛋白进行比较。我们发现N端His标签直接影响EB1与微管之间的相互作用,显著增加亲和力和活性,并且少量His标签化蛋白与大量无标签蛋白协同作用。此外,EB1与微管蛋白的结合比例可以超过1:1,并且EB1-微管结合曲线不符合简单的结合模型。这些观察结果表明EB1的结合不限于微管接缝,并且表明EB1与微管协同结合。最后,我们发现去除微管蛋白C端尾巴会显著降低EB1的结合,这表明EB1-微管蛋白相互作用部分是由其他微管相关蛋白(MAPs)利用的相同微管蛋白酸性尾巴介导的。这些结合关系对于阐明微管末端的蛋白质复合物很重要。