Laboratory of Biochemistry, Faculty of Agriculture, Nagoya University, Furo-cho, Chikusa-ku, 464, Nagoya, Japan.
Plant Mol Biol. 1986 Sep;7(5):343-55. doi: 10.1007/BF00032564.
Sporamin, which accounts for 80% of the total soluble proteins in sweet potato tuberous roots, consists of two polypeptide classes, A and B. The sporamin cDNA clones can also be classified into sporamin A and B subfamilies based on their sequence homologies, with intra-subfamily homologies being much higher than inter-subfamily homologies. The sequence of an essentially full-length cDNA for sporamin B was compared with that for sporamin A. The coding sequences of two cDNAs share 83% sequence homology. The sequences in the 5'- and 3'-noncoding regions show many deletions in addition to base substitutions. The endpoints of deletions longer than 4 bp match precisely to the endpoints of short direct repeats present in the other sequence, which suggests that these deletions are generated by slipped mispairing during DNA replication. In the 5'- and 3'-noncoding region of sporamin B cDNA, there are 5 bp direct repeats with sequences complementary to each other. Since most of these repeats are absent in sporamin A cDNA, these structural features may cause a difference in the secondary structure between A and B mRNAs and affect the translational efficiencies or stabilities of the mRNAs. Precursors for both classes of sporamin carry N-terminal extra-sequences which can be separated into a putative signal peptide segment and a segment enriched with basic amino acids. A two-step processing mechanism for the maturation of sporamin is suggested.
块根甘薯中的贮藏蛋白约占总可溶性蛋白的 80%,由 A、B 两类多肽组成。根据同源性,贮藏蛋白 cDNA 克隆也可分为 A、B 两个亚家族,亚家族内的同源性远高于亚家族间的同源性。对一个贮藏蛋白 B 全长 cDNA 的序列与贮藏蛋白 A 进行比较。两个 cDNA 的编码序列有 83%的同源性。5'和 3'非编码区的序列除碱基替换外还显示出许多缺失。大于 4bp 的缺失的端点与另一个序列中存在的短直接重复序列的端点完全匹配,这表明这些缺失是在 DNA 复制过程中发生的滑动错配造成的。在贮藏蛋白 B cDNA 的 5'和 3'非编码区,有 5bp 的彼此互补的直接重复序列。由于这些重复序列在贮藏蛋白 A cDNA 中大部分缺失,因此这些结构特征可能导致 A 和 B mRNA 之间的二级结构存在差异,并影响 mRNA 的翻译效率或稳定性。两类贮藏蛋白的前体都带有 N 端额外序列,可分为假定的信号肽片段和富含碱性氨基酸的片段。提出了贮藏蛋白成熟的两步加工机制。