Briza P, Ellinger A, Winkler G, Breitenbach M
Institut für Allgemeine Biochemie und Ludwig-Boltzmann-Forschungsstelle für Bíochemie, Wien, Austria.
J Biol Chem. 1990 Sep 5;265(25):15118-23.
We have shown previously that the outer layers of yeast ascospore walls contain dityrosine and that this amino acid is a major component of the cross-linked peptides present in the spore wall (Briza, P., Winkler, G., Kalchhauser, H., and Breitenbach, M. (1986) J. Biol. Chem. 261, 4288-4294). We now present evidence that dityrosine is located in the outermost layer and that it is in the DL-configuration. Although the proteins (peptides) of the spore wall are insoluble, the macromolecule containing dityrosine can be solubilized by partial acid hydrolysis of spore walls. Analysis of this macromolecule indicates that it contains more than 50 mol% dityrosine and a very limited number of other amino acids. Interestingly, part of the dityrosine of spore walls is present in the DL-configuration. We speculate that not only the high degree of cross-links in the outermost layer but also the D-configuration of part of the alpha-C-atoms of dityrosine could contribute to the spores' resistance to lytic enzymes.
我们之前已经表明,酵母子囊孢子壁的外层含有二酪氨酸,并且这种氨基酸是孢子壁中存在的交联肽的主要成分(布里扎,P.,温克勒,G.,卡尔豪泽,H.,和布赖滕巴赫,M.(1986年)《生物化学杂志》261,4288 - 4294)。我们现在提供证据表明二酪氨酸位于最外层,并且它处于DL - 构型。尽管孢子壁的蛋白质(肽)不溶,但含有二酪氨酸的大分子可以通过孢子壁的部分酸水解来溶解。对这种大分子的分析表明,它含有超过50摩尔%的二酪氨酸和数量非常有限的其他氨基酸。有趣的是,孢子壁的部分二酪氨酸以DL - 构型存在。我们推测,不仅最外层的高度交联,而且二酪氨酸部分α - C原子的D - 构型都可能有助于孢子对裂解酶的抗性。