Agostinelli E, Cervoni L, Giartosio A, Morpurgo L
Dipartimento di Scienze Biochimiche A. Rossi Fanelli, Università di Roma La Sapienza, Italy.
Biochem J. 1995 Mar 15;306 ( Pt 3)(Pt 3):697-702. doi: 10.1042/bj3060697.
The thermal denaturation of laccase from the Japanese lacquer tree (Rhus vernicifera) was studied by differential scanning calorimetry. The endotherms of holo-laccase, type 2-Cu-depleted laccase and apo-laccase were deconvoluted into two independent two-state transitions, providing evidence for a domain structure of the protein. The correlation of the two transitions with the bleaching of copper optical bands and the decrease of the transitions' enthalpy on Cu removal show that the process involves the denaturation of Cu sites. No detectable unfolding of secondary structure was observed, since the thermal transitions, characterized by low overall specific enthalpy, did not modify either the laccase c.d. spectra in the beta-fold region or the maximum wavelength of the fluorescence emission. On chemical denaturation, however, the emission was red-shifted by about 20 nm. The laccase behaviour is substantially different from that of stellacyanin, a protein containing a single blue Cu ion, in which the thermal transition had higher specific enthalpy and induced a large change of the c.d. spectrum in the beta-fold region. The laccase denaturation behaviour is similar to that of ascorbate oxidase from zucchini (courgette; Cucurbita pepo) [Savini, D'Alessio, Giartosio, Morpurgo and Avigliano (1990) Eur. J. Biochem. 190, 491-495], suggesting a structural analogy. In both proteins heating may cause a change of tertiary structure through modifications of Cu co-ordination with loosening of the bonds between the structural domains at the interface of which the trinuclear Cu cluster is located.
采用差示扫描量热法研究了漆树(漆树)漆酶的热变性。全酶漆酶、2型铜缺失漆酶和脱辅基漆酶的吸热峰被解卷积为两个独立的两态转变,为该蛋白质的结构域结构提供了证据。两个转变与铜光带的漂白以及去除铜后转变焓的降低之间的相关性表明,该过程涉及铜位点的变性。未观察到二级结构的可检测展开,因为以低总比焓为特征的热转变既未改变β折叠区域的漆酶圆二色光谱,也未改变荧光发射的最大波长。然而,在化学变性时,发射峰红移了约20 nm。漆酶的行为与含单个蓝色铜离子的蛋白质紫铜蓝蛋白有很大不同,紫铜蓝蛋白的热转变具有更高的比焓,并在β折叠区域引起圆二色光谱的大变化。漆酶的变性行为与西葫芦(西葫芦;西葫芦)的抗坏血酸氧化酶相似[萨维尼、达莱西奥、贾尔托西奥、莫普尔戈和阿维利亚诺(1990年)欧洲生物化学杂志190,491 - 495],表明存在结构类比。在这两种蛋白质中,加热可能通过改变铜配位来引起三级结构的变化,同时使位于三核铜簇界面的结构域之间的键松弛。