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关于一种在低温下可逆沉淀的免疫球蛋白轻链的热力学和构象研究。

Thermodynamic and conformational studies on an immunoglobulin light chain which reversibly precipitates at low temperatures.

作者信息

Klein M, Kells D I, Tinker D O, Dorrington K J

出版信息

Biochemistry. 1977 Feb 8;16(3):552-60. doi: 10.1021/bi00622a032.

Abstract

A lambda light chain, isolated from an immunoglobulin G molecule, was found to reversibly precipitate at low temperatures. This cryoprecipitation was a function of pH, ionic strength, protein concentration, and time as well as temperature. The lambda chain underwent a cooperative conformational change as the temperature was lowered from 26 to 0 degrees C as judged by ultraviolet difference spectroscopy and circular dichroism. Normal lambda chains showed no conformational change. By difference spectroscopy it was possible to calculate the equilibrium constant governing the conformational change. The change was strongly exothermic (delta H approximately -80 kcal mol-1) and accompanied by a large decrease in entropy (delta S approximately -280 eu). The midpoint of the transition was dependent on the initial protein concentration, suggesting that only the noncovalent dimer of the lambda chain exhibited the conformational change. The existence of a monomer-dimer eqiulibrium (KA approximately 4 X 10(5) M-1) was confirmed by sedimentation velocity. No conformational change was observed by circular dichroism at concentrations where greater than 95% of lambda chain was in the form of a monomer. Although high ionic strength inhibited cryoprecipitation, it had no effect on the conformational change. Stabilization of the dimer by forming an interchain disulfide bond between two monomers abolished both the conformational change and cryoprecipitation. A fragment corresponding to the constant region was isolated from both peptic and tryptic digests of the lambda chain. This fragment neither cryoprecipitated nor showed temperature dependence conformational changes. It proved impossible to isolate a fragment corresponding to the variable region. Both qualitative and quantitative models are presented to account for the behavior of the lambda chain at low temperatures.

摘要

从免疫球蛋白G分子中分离出的一条λ轻链被发现可在低温下可逆沉淀。这种冷沉淀是pH、离子强度、蛋白质浓度、时间以及温度的函数。通过紫外差分光谱法和圆二色性判断,当温度从26℃降至0℃时,λ链发生了协同构象变化。正常的λ链未显示构象变化。通过差分光谱法可以计算出控制构象变化的平衡常数。该变化强烈放热(ΔH约为 -80 kcal·mol⁻¹),并伴随着熵的大幅降低(ΔS约为 -280 eu)。转变的中点取决于初始蛋白质浓度,这表明只有λ链的非共价二聚体表现出构象变化。沉降速度证实了单体 - 二聚体平衡(KA约为4×10⁵ M⁻¹)的存在。在λ链大于95%以单体形式存在的浓度下,通过圆二色性未观察到构象变化。尽管高离子强度抑制冷沉淀,但对构象变化没有影响。通过在两个单体之间形成链间二硫键来稳定二聚体,消除了构象变化和冷沉淀。从λ链的胃蛋白酶和胰蛋白酶消化物中分离出了对应于恒定区的片段。该片段既不发生冷沉淀,也不显示温度依赖性构象变化。事实证明无法分离出对应于可变区的片段。本文提出了定性和定量模型来解释λ链在低温下的行为。

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