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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Reactions of an organoruthenium anticancer complex with 2-mercaptobenzanilide-a model for the active-site cysteine of protein tyrosine phosphatase 1B
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Reactions of an organoruthenium anticancer complex with 2-mercaptobenzanilide-a model for the active-site cysteine of protein tyrosine phosphatase 1B

机译:有机钌抗癌复合物与2-巯基苯甲酰苯胺-蛋白质酪氨酸磷酸酶1B活性位点半胱氨酸模型的反应

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The organometallic anticancer complex [(η~6-p-cymene)Ru(en) Cl]PF_6 (1, en = ethylenediamine) readily reacts with thiols and forms stable sulfenate/sulfinate adducts which may be important for its biological activity. Protein tyrosine phosphatase 1B (PTP1B), a therapeutic target, contains a catalytic cysteinyl thiol and is involved in the regulation of insulin signaling and the balance of protein tyrosine kinase activity. On oxidation, the catalytic Cys215 can form an unusual sulfenyl-amide intermediate which can subsequently be reduced by glutathione. Here we study reactions of 1 with 2-mercaptobenzanilide, 2, a recognized model for the active site of PTP1B. We have characterized crystallographically compound 2 and its oxidized sulfenyl-amide derivative 2-phenyl-1,2-benzisothiazol-3(2H)-one (4), which shows a close structural similarity to the sulfenyl-amide in oxidized PTP1B. At pH 7.4 and 5.3, 1 reacted with 2, affording a mono-ruthenium thiolato complex [(η~6-cym)Ru(en)(S-RS)]~+ (7~+, R = (C _6H_4)CONH(C_6H_5)) and a triply-S-bridged thiolato complex [((η~6-cym)Ru) _2(μ-S-RS)_3]~+ (8+), respectively. Coordination of Ru to the S atom in 7 allows formation of a strong H-bond (2.02 ?) between the en-NH and the carbonyl oxygen. To assess the possible effect of ruthenium coordination on the redox regulation of PTP1B, reactions of these thiolato products with H_2O_2 and/or GSH were then investigated, demonstrating that coordination to Ru largely retards both the oxidation (deactivation) of the thiol in compound 2 by H_2O _2 and the subsequent reduction (reactivation) of the sulfenyl-amide by GSH, implying that the inhibition of complex 1 on PTP1B (IC_(50) of 19 μM) may be attributed to coordination to its catalytic cysteine.
机译:有机金属抗癌复合物[(η〜6-对-cymene)Ru(en)Cl] PF_6(1,en =乙二胺)容易与硫醇反应并形成稳定的亚磺酸盐/亚磺酸盐加合物,这可能对其生物学活性至关重要。蛋白质酪氨酸磷酸酶1B(PTP1B)是一种治疗靶标,含有半胱氨酸催化硫醇,参与胰岛素信号的调节和蛋白质酪氨酸激酶活性的平衡。氧化时,催化的Cys215可以形成不寻常的亚磺酰胺中间体,随后可以被谷胱甘肽还原。在这里,我们研究1与2-巯基苯甲酰苯胺2的反应,这是PTP1B活性位点的公认模型。我们已经从结晶学上表征了化合物2及其氧化的亚磺酰胺衍生物2-苯基-1,2-苯并噻唑-3(2H)-一(4),该化合物与氧化的PTP1B中的亚磺酰胺具有相似的结构相似性。在pH 7.4和5.3下,1与2反应,得到单钌硫醇络合物[(η〜6-cym)Ru(en)(S-RS)] +(7〜+,R =(C _6H_4)CONH (C_6H_5))和三重S桥硫醇基络合物[(((η〜6-cym)Ru)_2(μ-S-RS)_3] +(8+)。 Ru在7中与S原子的配位允许在en-NH和羰基氧之间形成强H键(2.02Ω)。为了评估钌配位对PTP1B氧化还原调节的可能影响,然后研究了这些硫醇产物与H_2O_2和/或GSH的反应,表明与Ru的配位很大程度上阻碍了化合物2中硫醇的氧化(失活), H_2O _2以及随后被GSH还原(激活)的亚磺酰胺,这意味着复合物1对PTP1B的抑制(IC_(50)为19μM)可能归因于其催化半胱氨酸的配位。

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