Maccioni R B, Rivas C I, Vera J C
Department of Biochemistry, Biophysics and Genetics, University of Colorado Health Sciences Center, Denver 80262.
EMBO J. 1988 Jul;7(7):1957-63. doi: 10.1002/j.1460-2075.1988.tb03033.x.
In previous studies we have demonstrated that a 4-kd tubulin fragment, including amino acid residues from Phe418 to Glu450 in alpha-subunit and Phe408-Ala445 of the beta-sequence, plays a major role in controlling tubulin interactions leading to microtubule assembly. The 4-kd carboxyl-terminal domain also constitutes an essential domain for the interaction of microtubule-associated proteins (MAPs). Removal of the 4-kd fragment facilitates tubulin self-association and renders the assembly MAP-independent. In order to define the substructure of the tubulin domain for MAP interaction, we have examined the binding of 3H-acetylated C-terminal peptides to MAP-2 and tau. Two synthetic peptides from the low-homology region within the 4-kd domain alpha (430-441) and beta (422-434) and the peptide, alpha (401-410) of the high-homology region adjacent to the 4-kd domain, were analyzed with respect to MAP interaction. The binding data showed a relatively strong interaction of MAP-2 with the beta (422-434) peptide and a weaker interaction of both MAPs components with alpha (430-441) tubulin peptide as analyzed by Airfuge ultracentrifugation and zone filtration chromatography. The homologous alpha (401-410) peptide did not bind to either MAP-2 or tau. Equilibrium dialysis experiments showed a co-operative binding of beta (422-434) peptide to multiple sites in tau. The alpha (430-441) peptide exhibited a stronger interaction for tau as compared with MAP-2.(ABSTRACT TRUNCATED AT 250 WORDS)
在先前的研究中,我们已经证明,一个4kd的微管蛋白片段,包括α亚基中从苯丙氨酸418到谷氨酸450的氨基酸残基以及β序列中的苯丙氨酸408 - 丙氨酸445,在控制导致微管组装的微管蛋白相互作用中起主要作用。这个4kd的羧基末端结构域也是微管相关蛋白(MAPs)相互作用的必需结构域。去除4kd片段有助于微管蛋白的自我结合,并使组装不依赖于MAPs。为了确定微管蛋白结构域与MAPs相互作用的亚结构,我们研究了3H - 乙酰化C末端肽与MAP - 2和tau的结合。分析了来自4kd结构域α(430 - 441)和β(422 - 434)低同源区域的两个合成肽以及与4kd结构域相邻的高同源区域的α(401 - 410)肽与MAPs的相互作用。通过空气离心机超速离心和区带过滤色谱分析结合数据显示,MAP - 2与β(422 - 434)肽有相对较强的相互作用,而两种MAPs成分与α(430 - 441)微管蛋白肽的相互作用较弱。同源的α(401 - 410)肽不与MAP - 2或tau结合。平衡透析实验表明β(422 - 434)肽与tau中的多个位点有协同结合。与MAP - 2相比,α(430 - 441)肽与tau的相互作用更强。(摘要截短于250字)