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Refolding of β-Stranded Class I Chitinases of Hippophae rhamnoides Enhances the Antifreeze Activity during Cold Acclimation

机译:沙棘的β链I类几丁质酶的复性增强冷驯化过程中的抗冻活性

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摘要

Class I chitinases hydrolyse the β-1,4-linkage of chitin and also acquire antifreeze activity in some of the overwintering plants during cold stress. Two chitinases, HrCHT1a of 31 kDa and HrCHT1b of 34 kDa, were purified from cold acclimated and non-acclimated seabuckthorn seedlings using chitin affinity chromatography. 2-D gels of HrCHT1a and HrCHT1b showed single spots with pIs 7.0 and 4.6 respectively. N-terminal sequence of HrCHT1b matched with the class I chitinase of rice and antifreeze proteins while HrCHT1a could not be sequenced as it was N-terminally blocked. Unlike previous reports, where antifreeze activity of chitinase was cold inducible, our results showed that antifreeze activity is constitutive property of class I chitinase as both HrCHT1a and HrCHT1b isolated even from non-acclimated seedlings, exhibited antifreeze activity. Interestingly, HrCHT1a and HrCHT1b purified from cold acclimated seedlings, exhibited 4 and 2 times higher antifreeze activities than those purified from non-acclimated seedlings, suggesting that antifreeze activity increased during cold acclimation. HrCHT1b exhibited 23–33% higher hydrolytic activity and 2–4 times lower antifreeze activity than HrCHT1a did. HrCHT1b was found to be a glycoprotein; however, its antifreeze activity was independent of glycosylation as even deglycosylated HrCHT1b exhibited antifreeze activity. Circular dichroism (CD) analysis showed that both these chitinases were rich in unusual β-stranded conformation (36–43%) and the content of β-strand increased (∼11%) during cold acclimation. Surprisingly, calcium decreased both the activities of HrCHT1b while in case of HrCHT1a, a decrease in the hydrolytic activity and enhancement in its antifreeze activity was observed. CD results showed that addition of calcium also increased the β-stranded conformation of HrCHT1a and HrCHT1b. This is the first report, which shows that antifreeze activity is constitutive property of class I chitinase and cold acclimation and calcium regulate these activities of chitinases by changing the secondary structure.
机译:I类几丁质酶水解几丁质的β-1,4-键,并在寒冷胁迫下的一些越冬植物中获得抗冻活性。使用几丁质亲和色谱从冷驯化和未驯化的沙棘幼苗中纯化了两种几丁质酶,分别为31 kDa的HrCHT1a和34 kDa的HrCHT1b。 HrCHT1a和HrCHT1b的2-D凝胶显示单点,pI分别为7.0和4.6。 HrCHT1b的N端序列与水稻的I类几丁质酶和抗冻蛋白相匹配,而HrCHT1a却因其N端被封闭而无法测序。不同于以前的报道,几丁质酶的抗冻活性是冷诱导的,我们的结果表明,即使从未驯化的幼苗中分离出的HrCHT1a和HrCHT1b都具有抗冻活性,因此抗冻活性是I类几丁质酶的本构性质。有趣的是,从冷驯化幼苗中纯化得到的HrCHT1a和HrCHT1b的抗冻活性比从非驯化幼苗中纯化得到的抗冻活性高4到2倍,这表明在冷驯化过程中抗冻活性增加。与HrCHT1a相比,HrCHT1b的水解活性高23-33%,抗冻活性低2-4倍。发现HrCHT1b是一种糖蛋白。然而,它的抗冻活性与糖基化无关,因为即使去糖基化的HrCHT1b也具有抗冻活性。圆二色性(CD)分析表明,这两个几丁质酶都富含异常的β链构象(36–43%),并且在冷驯化过程中β链的含量增加(〜11%)。令人惊讶地,钙降低了HrCHT1b的活性,而在HrCHT1a的情况下,观察到了水解活性的降低和其抗冻活性的增强。 CD结果表明,钙的添加也增加了HrCHT1a和HrCHT1b的β链构象。这是第一份报告,表明抗冻活性是I类几丁质酶的组成特性,冷驯化和钙通过改变二级结构来调节几丁质酶的这些活性。

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    Ravi Gupta; Renu Deswal;

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  • 年(卷),期 -1(9),3
  • 年度 -1
  • 页码 e91723
  • 总页数 11
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