Biesiadka Jacek, Bujacz Grzegorz, Sikorski Michal M, Jaskolski Mariusz
Institute of Bioorganic Chemistry, Polish Academy of Sciences, 61-704 Poznan, Poland.
J Mol Biol. 2002 Jun 21;319(5):1223-34. doi: 10.1016/S0022-2836(02)00385-6.
Pathogenesis-related class 10 (PR10) proteins are restricted to the plant kingdom where they are coded by multigene families and occur at high levels. In spite of their abundance, their physiological role is obscure although members of a distantly related subclass (cytokinin-specific binding proteins) are known to bind plant hormones. PR10 proteins are of special significance in legume plants where their expression patterns are related to infection by the symbiotic, nitrogen-fixing bacteria. Here we present the first crystal structures of classic PR10 proteins representing two homologues from one subclass in yellow lupine. The general fold is similar and, as in a birch pollen allergen, consists of a seven-stranded beta-sheet wrapped around a long C-terminal helix. The mouth of a large pocket formed between the beta-sheet and the helix seems a likely site for ligand binding. The shape of the pocket varies because, in variance with the rigid beta-sheet, the helix shows unusual conformational variability consisting in bending, disorder, and axial shifting. A surface loop, proximal to the entrance to the internal cavity, shows an unusual structural conservation and rigidity in contrast to the high glycine content in its sequence. The loop is different from the so-called glycine-rich P-loops that bind phosphate groups of nucleotides, but it is very likely that it does play a role in ligand binding in PR10 proteins.
病程相关的第10类(PR10)蛋白仅存在于植物界,由多基因家族编码且大量存在。尽管它们数量众多,但其生理功能仍不清楚,不过已知一个远亲亚类(细胞分裂素特异性结合蛋白)的成员能结合植物激素。PR10蛋白在豆科植物中具有特殊意义,其表达模式与共生固氮细菌的感染有关。在此,我们展示了经典PR10蛋白的首个晶体结构,该结构代表了来自黄羽扇豆一个亚类的两个同源物。总体折叠结构相似,如同桦树花粉过敏原一样,由围绕着一个长C端螺旋的七股β-折叠组成。β-折叠和螺旋之间形成的一个大口袋的开口似乎是配体结合的可能位点。口袋的形状各异,因为与刚性的β-折叠不同,螺旋表现出异常的构象变异性,包括弯曲、无序和轴向移位。靠近内腔入口的一个表面环在序列中富含甘氨酸的情况下,却表现出异常的结构保守性和刚性。该环不同于结合核苷酸磷酸基团的所谓富含甘氨酸的P环,但它很可能在PR10蛋白的配体结合中发挥作用。