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普通小球藻C-27第3组胚胎发育晚期丰富蛋白的抗冻活性

Cryoprotective activities of group 3 late embryogenesis abundant proteins from Chlorella vulgaris C-27.

作者信息

Honjoh K I, Matsumoto H, Shimizu H, Ooyama K, Tanaka K, Oda Y, Takata R, Joh T, Suga K, Miyamoto T, Iio M, Hatano S

机构信息

Department of Bioscience and Biotechnology, Graduate School, Kyushu University, Fukuoka, Japan.

出版信息

Biosci Biotechnol Biochem. 2000 Aug;64(8):1656-63. doi: 10.1271/bbb.64.1656.

Abstract

The nucleotide sequence of hiC12, isolated as a cDNA clone of hardening-induced Chlorella (hiC) genes, was identified. The clone encodes a late embryogenesis abundant (LEA) protein having six repeats of a 11-mer amino acid motif, although in a slightly imperfect form. To overexpress the hiC61) and hiC12 genes, their coding regions were PCR amplified and subcloned into a pGEX-1lambdaT vector. The HIC6 and HIC12 proteins were expressed as GST fusion proteins in E. coli, then purified. The two HIC proteins were found to be effective in protecting a freeze-labile enzyme, LDH, against freeze-inactivation. On a molar concentration basis, they were about 3.1 x 10(6) times more effective in protecting LDH than sucrose and as effective as BSA. Cryoprotection tests with five kinds of chain-shortened polypeptides, synthesized based on the 11-mer amino acid motif of the HIC6 protein showed that the cryoprotective activity decreased with a decrease in the repeating units of the 11-mer motif. In fact, cryoprotective activities of three kinds of single 11-mer amino acids were very low even at high concentrations. All the results suggested that the sufficiently repeated 11-mer motif is required for the cryoprotective activities of Chlorella LEA proteins.

摘要

作为硬化诱导的小球藻(hiC)基因的cDNA克隆分离得到的hiC12的核苷酸序列已被鉴定。该克隆编码一种晚期胚胎发生丰富(LEA)蛋白,具有11个氨基酸基序的六个重复序列,尽管形式略有不完美。为了过表达hiC6和hiC12基因,对它们的编码区进行PCR扩增并亚克隆到pGEX-1λT载体中。HIC6和HIC12蛋白在大肠杆菌中作为GST融合蛋白表达,然后纯化。发现这两种HIC蛋白在保护对冷冻敏感的酶乳酸脱氢酶(LDH)免于冷冻失活方面是有效的。以摩尔浓度为基础,它们在保护LDH方面比蔗糖有效约3.1×10⁶倍,并且与牛血清白蛋白(BSA)一样有效。基于HIC6蛋白的11个氨基酸基序合成的五种链缩短多肽的冷冻保护试验表明,冷冻保护活性随着11个氨基酸基序重复单元的减少而降低。事实上,即使在高浓度下,三种单一的11个氨基酸的冷冻保护活性也非常低。所有结果表明,小球藻LEA蛋白的冷冻保护活性需要足够重复的11个氨基酸基序。

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