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叶酸结合蛋白的配体结合与热解折叠之间的相互关系。自缔合和pH值的作用。

The interrelationship between ligand binding and thermal unfolding of the folate binding protein. The role of self-association and pH.

作者信息

Holm Jan, Babol Linnea N, Markova Natalia, Lawaetz Anders J, Hansen Steen I

机构信息

Department of Clinical Biochemistry, Nordsjællands Hospital-Hillerød, University Hospital Copenhagen, Dyrehavevej 29, DK-3400 Hillerød, Denmark.

GE Healthcare, Life Sciences Bio-Sciences AB, Bjørkgatan 30, 751 84 Uppsala, Sweden.

出版信息

Biochim Biophys Acta. 2014 Mar;1844(3):512-9. doi: 10.1016/j.bbapap.2013.12.009. Epub 2013 Dec 24.

Abstract

The present study utilized a combination of DLS (dynamic light scattering) and DSC (differential scanning calorimetry) to address thermostability of high-affinity folate binding protein (FBP), a transport protein and cellular receptor for the vitamin folate. At pH7.4 (pI=7-8) ligand binding increased concentration-dependent self-association of FBP into stable multimers of holo-FBP. DSC of 3.3μM holo-FBP showed Tm (76°C) and molar enthalpy (146kcalM(-1)) values increasing to 78°C and 163kcalM(-1) at 10μM holo-FBP, while those of apo-FBP were 55°C and 105kcalM(-1). Besides ligand binding, intermolecular forces involved in concentration-dependent multimerization thus contribute to the thermostability of holo-FBP. Hence, thermal unfolding and dissociation of holo-FBP multimers occur simultaneously consistent with a gradual decrease from octameric to monomeric holo-FBP (10μM) in DLS after a step-wise rise in temperature to 78°C≈Tm. Stable holo-FBP multimers may protect naturally occurring labile folates against decomposition or bacterial utilization. DSC established an interrelationship between diminished folate binding at pH5, especially in NaCl-free buffers, and low thermostability. Positively charged apo-FBP was almost completely unfolded and aggregated at pH5 (Tm 38°C) and holo-FBP, albeit more thermostable, was labile with aggregation tendency. Addition of 0.15M NaCl increased thermostability of apo-FBP drastically, and even more so that of holo-FBP. Electrostatic forces thus seem to contribute to a diminished thermostability at low pH. Fluorescence spectroscopy after irreversible thermal unfolding of FBP revealed a weak-affinity folate binding.

摘要

本研究采用动态光散射(DLS)和差示扫描量热法(DSC)相结合的方法,研究高亲和力叶酸结合蛋白(FBP)的热稳定性。FBP是一种转运蛋白,也是维生素叶酸的细胞受体。在pH7.4(pI = 7 - 8)条件下,配体结合增加了FBP浓度依赖性的自缔合,形成稳定的全FBP多聚体。3.3μM全FBP的DSC显示,在10μM全FBP时,熔点(Tm,76°C)和摩尔焓(146kcalM⁻¹)值分别增加到78°C和163kcalM⁻¹,而脱辅基FBP的熔点和摩尔焓值分别为55°C和105kcalM⁻¹。因此,除了配体结合外,浓度依赖性多聚化过程中涉及的分子间力有助于全FBP的热稳定性。因此,全FBP多聚体的热解折叠和解离同时发生,这与温度逐步升高至78°C≈Tm后,DLS中全FBP(10μM)从八聚体逐渐减少到单体的情况一致。稳定的全FBP多聚体可能保护天然存在的不稳定叶酸不被分解或细菌利用。DSC确定了在pH5时叶酸结合减少之间的相互关系,特别是在无NaCl缓冲液中,以及低热稳定性之间的关系。带正电荷的脱辅基FBP在pH5(Tm 38°C)时几乎完全解折叠并聚集,而全FBP虽然热稳定性更高,但也不稳定且有聚集倾向。添加0.15M NaCl可显著提高脱辅基FBP的热稳定性,对全FBP的提高更明显。因此,静电力似乎导致低pH下热稳定性降低。FBP不可逆热解折叠后的荧光光谱显示存在弱亲和力的叶酸结合。

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