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Intrachain disulfide bond in the core hinge region of human IgG4.

机译:人IgG4核心铰链区的链内二硫键。

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摘要

IgG is a tetrameric protein composed of two copies each of the light and heavy chains. The four-chain structure is maintained by strong noncovalent interactions between the amino-terminal half of pairs of heavy-light chains and between the carboxyl-terminal regions of the two heavy chains. In addition, interchain disulfide bonds link each heavy-light chain and also link the paired heavy chains. An engineered human IgG4 specific for human tumor necrosis factor-alpha (CDP571) is similar to human myeloma IgG4 in that it is secreted as both disulfide bonded tetramers (approximately 75% of the total amount of IgG) and as tetramers composed of nondisulfide bonded half-IgG4 (heavy chain disulfide bonded to light chain) molecules. However, when CDP571 was genetically engineered with a proline at residue 229 of the core hinge region rather than serine, CDP571 (S229P), or with an IgG1 rather than IgG4 hinge region, CDP571(gamma 1), only trace amounts of nondisulfide bonded half-IgG tetramers were observed. Trypsin digest reversephase HPLC peptide mapping studies of CDP571 and CDP571(gamma 1) with on-line electrospray ionization mass spectroscopy supplemented with Edman sequencing identified the chemical factor preventing inter-heavy chain disulfide bond formation between half-IgG molecules: the two cysteines in the IgG4 and IgG1 core hinge region (CPSCP and CPPCP, respectively) are capable of forming an intrachain disulfide bond. Conformational modeling studies on cyclic disulfide bonded CPSCP and CPPCP peptides yielded energy ranges for the low-energy conformations of 31-33 kcal/mol and 40-42 kcal/mol, respectively. In addition, higher torsion and angle bending energies were observed for the CPPCP peptide due to backbone constraints caused by the extra proline. These modeling results suggest a reason why a larger fraction of intrachain bonds are observed in IgG4 rather than IgG1 molecules: the serine in the core hinge region of IgG4 allows more hinge region flexibility than the proline of IgG1 and thus may permit formation of a stable intrachain disulfide bond more readily.
机译:IgG是一种四聚体蛋白,由轻链和重链各两个拷贝组成。四链结构通过重轻链对的氨基末端一半之间和两条重链的羧基末端区域之间的强非共价相互作用来维持。另外,链间二硫键连接每条重链,也连接成对的重链。对人肿瘤坏死因子-α(CDP571)特异的工程化人IgG4与人骨髓瘤IgG4相似,因为它以二硫键结合的四聚体(约占IgG总量的75%)和由非二硫键结合的一半构成的四聚体形式分泌-IgG4(与轻链键合的重链二硫键)分子。但是,当CDP571在核心铰链区的残基229而不是丝氨酸上用脯氨酸进行基因工程改造时,CDP571(S229P),或者在IgG1而不是IgG4铰链区中用CDP571(γ1)进行遗传工程改造时,只有痕量的非二硫键结合观察到-IgG四聚体。胰蛋白酶消化反相HPLC肽图分析CDP571和CDP571(γ1)的在线电喷雾电离质谱,并结合Edman测序确定了防止半IgG分子之间重链二硫键形成的化学因子:两个半胱氨酸IgG4和IgG1核心铰链区(分别为CPSCP和CPPCP)能够形成链内二硫键。环二硫键结合的CPSCP和CPPCP肽的构象建模研究得出的低能构象的能量范围分别为31-33 kcal / mol和40-42 kcal / mol。另外,由于额外的脯氨酸引起的主链约束,CPPCP肽观察到更高的扭转和弯曲能量。这些建模结果表明了为什么在IgG4而非IgG1分子中观察到更大比例的链内键的原因:IgG4核心铰链区中的丝氨酸比IgG1脯氨酸具有更大的铰链区灵活性,因此可以形成稳定的链内二硫键更容易。

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