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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Ternary Cu(II) complexes, Cu(H-1L)(ACys(-)) and Cu(H-2L)(ACys(-)); L = peptides, ACys(-) = N-acetyl-cysteinate. Analogous complexes to the intermediates in the transport of Cu(II) from Cu(H-2L) to cysteine
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Ternary Cu(II) complexes, Cu(H-1L)(ACys(-)) and Cu(H-2L)(ACys(-)); L = peptides, ACys(-) = N-acetyl-cysteinate. Analogous complexes to the intermediates in the transport of Cu(II) from Cu(H-2L) to cysteine

机译:三元Cu(II)配合物Cu(H-1L)(ACys(-))和Cu(H-2L)(ACys(-)); L =肽,ACys(-)= N-乙酰基半胱氨酸。与Cu(II)从Cu(H-2L)转运到半胱氨酸中的中间体类似的配合物

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The Cu(II) in Cu(H-2L) has been postulated to be successively transported to cysteine (Cys) as follows; Cu(H-2L) reversible arrow Cu(H-2L)(Cys*(-)) reversible arrow Cu(H-1L)(Cys*(-)) Cu(H-1L)(Cys(-)), where Cys*(-) denotes the monodentate Cys(-). N-acetyl-cysteinate (ACys(-)) complexes Cu(H-2L)(ACys(-)) and Cu(H-1L)(ACys(-)), having similar coordination modes to Cu(H-2L)(Cys*(-)) and Cu(H-1L)(Cys*(-)), respectively, exhibited the S -> Cu(II) charge transfer absorption at 325-355 nm and the d-d absorption at 530610 nm. A linear interrelation existed between the energies of the CD and d-d absorptions. Cu(H-2L)(ACys(-)) were in rapid equilibrium with Cu(H-1L)(ACys(-)). Upon forming the ternary complex, pK(c2) of the parent Cu(H-1L) was raised to more than 1.0. The formation constants (K) of the Cu(H-1L)(ACys(-)) species from Cu(H-1L) were bigger than those of Cu(H-2L)(ACys(-)) from Cu(H-2L). The linear free-energy relationship existed between the free-energy change (Delta G) and the entropy change (Delta S) for the ternary complex formation. The rate constants (k(1+)) for the Cu(H-1L)(Cys(-)) formation closely correlated with the Kvalues for Cu(H-2L)(ACys(-)). The ternary complexes containing ACys are considered to be analogous complexes to the intermediates in the transport of Cu(II) from peptides to cysteine. (c) 2005 Elsevier Inc. All rights reserved.
机译:据推测,Cu(H-2L)中的Cu(II)依次被转运到半胱氨酸(Cys)。 Cu(H-2L)可逆箭头Cu(H-2L)(Cys *(-))Cu(H-1L)(Cys *(-))Cu(H-1L)(Cys(-)),其中Cys *(-)表示单齿的Cys(-)。 N-乙酰基半胱氨酸(ACys(-))络合物Cu(H-2L)(ACys(-))和Cu(H-1L)(ACys(-)),具有与Cu(H-2L)( Cys *(-))和Cu(H-1L)(Cys *(-))分别在325-355 nm处表现出S→Cu(II)电荷转移吸收,在530610 nm处表现出dd吸收。 CD的能量与d-d吸收之间存在线性关系。 Cu(H-2L)(ACys(-))与Cu(H-1L)(ACys(-))快速平衡。形成三元络合物后,母体Cu(H-1L)的pK(c2)升高至1.0以上。 Cu(H-1L)的Cu(H-1L)(ACys(-))的形成常数(K)大于Cu(H-L)的Cu(H-2L)(ACys(-))的形成常数2L)。三元配合物形成的自由能变化量(Delta G)和熵变(Delta S)之间存在线性自由能关系。 Cu(H-1L)(Cys(-))形成的速率常数(k(1+))与Cu(H-2L)(ACys(-))的K值密切相关。包含ACys的三元复合物被认为是与Cu(II)从肽到半胱氨酸的转运中间体类似的复合物。 (c)2005 Elsevier Inc.保留所有权利。

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