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钯对里氏木霉纤维二糖水解酶I的抑制作用。

Inhibition of cellobiohydrolase I from Trichoderma reesei by palladium.

作者信息

Lassig J P, Shultz M D, Gooch M G, Evans B R, Woodward J

机构信息

Chemical Technology Division, Oak Ridge National Laboratory, Tennessee 37831-6194, USA.

出版信息

Arch Biochem Biophys. 1995 Sep 10;322(1):119-26. doi: 10.1006/abbi.1995.1443.

Abstract

Cellulase from Trichoderma reesei is a multienzyme mixture that hydrolyzes cellulose to glucose. Two enzymes in this mixture, cellobiohydrolase (CBH) and endoglucanase (EG), possess a common structure comprising a distinct cellulose-binding domain (CBD) and catalytic domain. Inhibition of the catalytic domain of cellulases without affecting their CBD function might be useful for structure/function studies of these enzymes. Complexes of the platinum group metals were tested for their ability to inhibit the major cellulase enzyme from T. reesei, cellobiohydrolase I (CBH I). Only palladium complexes inhibited CBH I, inhibition being dependent upon the molar ratio of palladium to CBH I with 1 microM CBH I retaining only 10% of its activity in the presence of 100 microM ammonium hexachloropalladate(IV) and after the incorporation of 28 mol Pd/mol CBH I. Inhibition was irreversible and could be completely prevented by including histidine, cysteine, and cystine in the assay mixture. Although the primary mechanism of inhibition of CBH I by palladium remains to be elucidated, it could involve the binding of palladium to sulfur or cystine residues resulting in their degradation. This is based on the findings that (i) palladium-inhibited CBH I was less thermally stable than native CBH I; (ii) CBH I, chemically modified by the attachment of pentaammine ruthenium(III) to the imidazole-N of either H206 or H228, showed greater sensitivity to inhibition by palladium compared to native CBH I; and (iii) ammonium hexachloropalladate cleaved 5,5'-dithiobis(2-nitrobenzoic acid)--Ellman's reagent. Binding of CBH I to crystalline cotton linters was not affected by palladium.

摘要

里氏木霉纤维素酶是一种多酶混合物,可将纤维素水解为葡萄糖。该混合物中的两种酶,纤维二糖水解酶(CBH)和内切葡聚糖酶(EG),具有共同的结构,包括一个独特的纤维素结合结构域(CBD)和催化结构域。在不影响纤维素酶CBD功能的情况下抑制其催化结构域,可能有助于这些酶的结构/功能研究。测试了铂族金属配合物抑制里氏木霉主要纤维素酶——纤维二糖水解酶I(CBH I)的能力。只有钯配合物能抑制CBH I,抑制作用取决于钯与CBH I的摩尔比,在100 μM六氯钯酸铵(IV)存在下,1 μM CBH I在掺入28 mol Pd/mol CBH I后仅保留其10%的活性。抑制作用是不可逆的,在测定混合物中加入组氨酸、半胱氨酸和胱氨酸可完全防止抑制作用。尽管钯抑制CBH I的主要机制仍有待阐明,但可能涉及钯与硫或胱氨酸残基的结合,导致它们降解。这是基于以下发现:(i)钯抑制的CBH I比天然CBH I热稳定性差;(ii)通过将五氨合钌(III)连接到H206或H228的咪唑-N上进行化学修饰的CBH I,与天然CBH I相比,对钯抑制更敏感;(iii)六氯钯酸铵可裂解5,5'-二硫代双(2-硝基苯甲酸)——埃尔曼试剂。CBH I与结晶棉短绒的结合不受钯的影响。

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