Yoshigi N, Okada Y, Sahara H, Koshino S
Brewing Research Laboratories, Sapporo Breweries Ltd., Shizuoka.
J Biochem. 1994 Jan;115(1):47-51. doi: 10.1093/oxfordjournals.jbchem.a124303.
Polymerase chain reaction (PCR) amplification of mRNA from developing barley (cultivar Haruna two-rows) endosperm was used to clone and sequence full-length cDNA encoding beta-amylase. The beta-amylase cDNA was 1,775 bp in length. The beta-amylase was deduced to be composed of 535 amino acid residues and its molecular weight was calculated to be 59,610. Kreis et al. reported that the beta-amylase cDNA from barley (cultivar Hiproly) was 1,754 bp in length and coded for a polypeptide of 535 amino acids [Eur. J. Biochem. (1987) 169, 517-525]. A comparison of the beta-amylase sequences from Haruna two-rows and Hiproly barleys revealed nine differences in the nucleotide sequence which resulted in three changes in the amino acid residues and 21 additional nucleotides at its 3'-end in the cultivar Haruna two-rows. The three changes were as follows: Ala-233, Ser-347, Met-527 (Haruna two-rows) and Val-233, Met-347, Ile-527 (Hiproly). Lundgard and Svensson pointed out that 23 amino acid residues of the peptide fragment derived from the COOH-terminal region of barley (cultivar Gula) beta-amylase were in agreement with the deduced amino acid sequence reported by Kreis et al., with the exception of a single position (Met-527 compared to Ile) [Carlsberg Res. Commun. (1986) 51, 487-491]. Our findings described above showed Met-527 is reasonable. In the cases of beta-amylases from soybean and sweet potato, the positions that corresponded to those at 233 and 347 in the amino acid sequence of beta-amylase from barley were Ala and Ser, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)
利用聚合酶链反应(PCR)从发育中的大麦(品种Haruna two-rows)胚乳中扩增mRNA,用于克隆和测序编码β-淀粉酶的全长cDNA。β-淀粉酶cDNA长度为1775 bp。推断β-淀粉酶由535个氨基酸残基组成,其分子量经计算为59610。Kreis等人报道,来自大麦(品种Hiproly)的β-淀粉酶cDNA长度为1754 bp,编码一个由535个氨基酸组成的多肽[《欧洲生物化学杂志》(1987年)169卷,517 - 525页]。对Haruna two-rows大麦和Hiproly大麦的β-淀粉酶序列进行比较,发现核苷酸序列有9处差异,导致氨基酸残基有3处变化,且在Haruna two-rows品种中其3'端还有21个额外核苷酸。这3处变化如下:Ala - 233、Ser - 347、Met - 527(Haruna two-rows)和Val - 233、Met - 347、Ile - 527(Hiproly)。Lundgard和Svensson指出,来自大麦(品种Gula)β-淀粉酶COOH末端区域的肽片段的23个氨基酸残基与Kreis等人报道的推导氨基酸序列一致,除了一个位置(Met - 527与Ile相比)[《嘉士伯研究通讯》(1986年)51卷,487 - 491页]。我们上述的研究结果表明Met - 527是合理的。在大豆和甘薯的β-淀粉酶中,与大麦β-淀粉酶氨基酸序列中233和347位相对应的位置分别是Ala和Ser。(摘要截短至250字)