首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >N5-(L-1-carboxyethyl)-L-ornithine synthase: physical and spectral characterization of the enzyme and its unusual low pKa fluorescent tyrosine residues.
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N5-(L-1-carboxyethyl)-L-ornithine synthase: physical and spectral characterization of the enzyme and its unusual low pKa fluorescent tyrosine residues.

机译:N5-(L-1-羧乙基)-L-鸟氨酸合酶:该酶及其不寻常的低pKa荧光酪氨酸残基的物理和光谱表征。

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摘要

N5-(L-1-carboxyethyl)-L-ornithine synthase [E.C. 1.5.1.24] (CEOS) from Lactococcus lactis has been cloned, expressed, and purified from Escherichia coli in quantities sufficient for characterization by biophysical methods. The NADPH-dependent enzyme is a homotetramer (Mr approximately equal to 140,000) and in the native state is stabilized by noncovalent interactions between the monomers. The far-ultraviolet circular dichroism spectrum shows that the folding pattern of the enzyme is typical of the alpha,beta family of proteins. CEOS contains one tryptophan (Trp) and 19 tyrosines (Tyr) per monomer, and the fluorescence spectrum of the protein shows emission from both Trp and Tyr residues. Relative to N-acetyltyrosinamide, the Tyr quantum yield of the native enzyme is about 0.5. All 19 Tyr residues are titratable and, of these, two exhibit the uncommonly low pKa of approximately 8.5, 11 have pKa approximately 10.75, and the remaining six titrate with pKa approximately 11.3. The two residues with pKa approximately 8.5 contribute approximately 40% of the total tyrosine emission, implying a relative quantum yield >1, probably indicating Tyr-Tyr energy transfer. In the presence of NADPH, Tyr fluorescence is reduced by 40%, and Trp fluorescence is quenched completely. The latter result suggests that the single Trp residue is either at the active site, or in proximity to the sequence GSGNVA, that constitutes the beta alphabeta fold of the nucleotide-binding domain. Chymotrypsin specifically cleaves native CEOS after Phe255. Although inactivated by this single-site cleavage of the subunit, the enzyme retains the capacity to bind NADPH and tetramer stability is maintained. Possible roles in catalysis for the chymotrypsin sensitive loop and for the low pKa Tyr residues are discussed.
机译:N5-(L-1-羧乙基)-L-鸟氨酸合酶[E.C. [1.5.1.24](乳酸乳球菌(CEOS))已从大肠杆菌中克隆,表达和纯化,其数量足以通过生物物理方法表征。 NADPH依赖性酶是同型四聚体(Mr大约等于140,000),其天然状态通过单体之间的非共价相互作用而稳定。远紫外线圆二色性光谱表明,该酶的折叠模式是蛋白质的α,β家族的典型特征。 CEOS每个单体包含一个色氨酸(Trp)和19个酪氨酸(Tyr),该蛋白质的荧光光谱显示Trp和Tyr残基均发射。相对于N-乙酰酪氨酸酰胺,天然酶的Tyr量子产率为约0.5。所有19个Tyr残基都是可滴定的,其中两个残基的pKa较低,约为8.5,11个残基的pKa约为10.75,其余六个滴定的pKa约为11.3。 pKa约为8.5的两个残基约占酪氨酸总发射量的40%,这意味着相对量子产率> 1,可能表明Tyr-Tyr能量转移。在NADPH存在下,Tyr荧光降低40%,Trp荧光完全淬灭。后一个结果表明,单个Trp残基位于活性位点或邻近序列GSGNVA,后者构成核苷酸结合域的β字母折叠。胰凝乳蛋白酶在Phe255之后特异性切割天然CEOS。尽管通过亚基的这种单点切割而失活,但是该酶保留了结合NADPH的能力,并保持了四聚体稳定性。讨论了胰凝乳蛋白酶敏感环和低pKa Tyr残基在催化中的可能作用。

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