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首页> 外文期刊>Biochemistry >E-coli expression of TIMP-4 and comparative kinetic studies with TIMP-1 and TIMP-2: Insights into the interactions of TIMPs and matrix metalloproteinase 2 (gelatinase A)
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E-coli expression of TIMP-4 and comparative kinetic studies with TIMP-1 and TIMP-2: Insights into the interactions of TIMPs and matrix metalloproteinase 2 (gelatinase A)

机译:TIMP-4的大肠杆菌表达以及与TIMP-1和TIMP-2的比较动力学研究:洞察TIMP和基质金属蛋白酶2(明胶酶A)的相互作用

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The inhibitory properties of TIMP-4 for matrix metalloproteinases (MMPs) were compared to those of TIMP-1 and TIMP-2. Full-length human TIMP-4 was expressed in E coli, folded from inclusion bodies, and the active component was purified by MMP-1 affinity chromatography. Progress curve analysis of MMP inhibition by TIMP-4 indicated that association rate constants (k(on)) and inhibition constants (K-i) were similar to those for other TIMPs (similar to10(5) M-1 s(-1) and 10(-9)-10(-12) M, respectively). Dissociation rate constants (k(off)) for MMP-1 and MMP-3 determined using alpha(2)-macroglobulin to capture MMP dissociating from MMP-TIMP complexes were in good agreement with values deduced from progress curves (similar to10(-4) s(-1)). K-i and k(on) for the interactions of TIMP-1, -2, and -4 with MMP-1 and -3 were shown to be pH dependent. TIMP-4 retained higher reactivity with MMPs at more acidic conditions than either TIMP-1 or TIMP-2. Molecular interactions of TIMPs and MMPs investigated by IAsys biosensor analysis highlighted different modes of interaction between proMMP-2-TIMP-2 (or TIMP-4) and active MMP-2-TIMP-2 (or TIMP-4) complexes. The observation that both active MMP-2 and inactive MMP-2 (with the active site blocked either by the propeptide or a hydroxamate inhibitor) have essentially identical affinities for TIMP-2 suggests that there are two TIMP binding sites on the hemopexin domain of MMP-2: one with high affinity that is involved in proMMP-2 or hydroxamate-inhibited MMP-2; and the other with low affinity involved in formation of the complex of active MMP-2 and TIMP-2. Similar models of interaction may apply to TIMP-4. The latter low-affinity site functions in conjunction with the active site of MMP-2 to generate a tight enzyme-inhibitor complex. [References: 67]
机译:比较了TIMP-4对基质金属蛋白酶(MMPs)的抑制特性与TIMP-1和TIMP-2的抑制特性。全长人TIMP-4在大肠杆菌中表达,从包涵体折叠,并通过MMP-1亲和色谱纯化活性成分。对TIMP-4抑制MMP的进展曲线分析表明,缔合速率常数(k(on))和抑制常数(Ki)与其他TIMP相似(类似于10(5)M-1 s(-1)和10 (-9)-10(-12)M)。使用alpha(2)-巨球蛋白捕获从MMP-TIMP复合物中解离的MMP所测定的MMP-1和MMP-3的解离速率常数(k(off))与从进度曲线推导的值非常吻合(类似于10(-4 )s(-1))。显示TIMP-1,-2和-4与MMP-1和-3相互作用的K-1和k(on)与pH有关。与TIMP-1或TIMP-2相比,TIMP-4在酸性条件下与MMP的反应性更高。 IAsys生物传感器分析研究了TIMP和MMP的分子相互作用,突出了proMMP-2-TIMP-2(或TIMP-4)与活性MMP-2-TIMP-2(或TIMP-4)复合物之间的不同相互作用方式。有活性的MMP-2和无活性的MMP-2(其活性位点被前肽或异羟肟酸酯抑制剂阻断)对TIMP-2的亲和力基本相同的观察结果表明,MMP的血红素结构域上有两个TIMP结合位点-2:与proMMP-2或异羟肟酸酯抑制的MMP-2有关的高亲和力;另一个低亲和力参与了活性MMP-2和TIMP-2的复合物的形成。相似的交互模型可能适用于TIMP-4。后者的低亲和力位点与MMP-2的活性位点一起起作用,以产生紧密的酶抑制剂复合物。 [参考:67]

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