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首页> 外文期刊>The Journal of Experomental Medicine >Thiol-disulfide interchange in the binding of bence jones proteins to alpha-antitrypsin, prealbumin, and albumin.
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Thiol-disulfide interchange in the binding of bence jones proteins to alpha-antitrypsin, prealbumin, and albumin.

机译:苯并琼斯蛋白与α-抗胰蛋白酶,前白蛋白和白蛋白结合时的巯基-二硫键交换。

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Native light Ig chains of kappa- but not of lambda-type form -S-S linked complexes with prealbumin, alpha1-AT and albumin in vivo. kappa-chains isolated from urines have cysteinyls which are more promptly reacting with dithionitrobenzoate (DTNB) than lambda-chains. Both are monomerized on this reaction. On addition to plasma mixed disulfides between both types of light chains and DTNB form larger amounts of complexes than the native chains. The lower reactivity of native lambda-chains to the plasma proteins can be explained by their higher dimer stability. From the light chain reactions obtained with isolated alpha1-AT and albumin it is concluded that alpha1-AT has a disulfide which efficiently interchanges with monomeric, light chain thiolate ions released from thionitrobenzoate derivates of light chains and that on interchange with the derivatized light chains albumin releases more free light chains into the solution than are bound to albumin. Addition of derivatized light chains to a mixture of alpha1-AT and albumin increases the yield of alpha1-AT complexes and decreases the amount of albumin complexes formed. The relative amount of the different complexes formed in the latter experiments corresponds to the findings in vivo in patients with Bence Jones proteinemia. Prealbumin and alpha1-AT in plasma have a roughly 10-fold stronger tendency to link the light chains than albumin. The complexes are formed through thiol-disulfide interchange though neither the disulfide of native alpha1-AT nor the thiols of prealbumin is available for reaction with DTNB. The three plasma proteins may together constitute a system for linkage and transport of peptides with reactive thiols or disulfides released into the extracellular fluids. The trypsin and elastase binding and inhibiting capacity of alpha1-AT remains after cleavage of the internal -S-S-bridge of alpha1-AT through interchange with a light chain thiol for which reason an intact internal -S-S-bridge of alpha1-AT is not necessary for inhibition and linkdage of the enzymes.
机译:κ-而非λ-形式的天然轻Ig链在体内与白蛋白前体,α1-AT和白蛋白连接在一起。从尿中分离出的κ链具有半胱氨酰,其与二硫代硝基苯甲酸酯(DTNB)的反应比λ链更迅速。两者都在该反应上被单体化。除了血浆之外,两种类型的轻链和DTNB之间的混合二硫化物比天然链形成更大数量的复合物。天然λ链对血浆蛋白的较低反应性可以通过它们较高的二聚体稳定性来解释。从用分离的α1-AT和白蛋白获得的轻链反应中可以得出结论,α1-AT具有二硫键,可以有效地与从轻链硫代硝基苯甲酸酯衍生物释放的单体轻链硫醇盐离子交换,并且与衍生化的轻链白蛋白交换向溶液中释放的游离轻链比与白蛋白结合的游离轻链更多。将衍生的轻链添加到α1-AT和白蛋白的混合物中可增加α1-AT复合物的产量,并减少形成的白蛋白复合物的量。在后面的实验中形成的不同复合物的相对量对应于本斯·琼斯蛋白血症患者体内的发现。血浆中的前白蛋白和α1-AT的轻链连接趋势比白蛋白强约10倍。尽管天然的α1-AT的二硫键和前白蛋白的硫醇都无法与DTNB反应,但它们是通过硫醇-二硫键交换形成的。三种血浆蛋白可以一起构成用于肽与释放到细胞外液中的反应性硫醇或二硫键连接和转运的系统。在通过与轻链硫醇互换来切割α1-AT的内部-SS桥后,仍然保留了胰蛋白酶和弹性蛋白酶的结合以及α1-AT的抑制能力,因此不需要完整的α1-AT的内部-SS-桥用于酶的抑制和连接。

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