论文标题

生理胁迫条件对蛋白质结构和胰蛋白酶抑制丝氨酸蛋白酶抑制剂1型(Spink1)及其N34S变体的影响

The impact of physiological stress conditions on protein structure and trypsin inhibition of serine protease inhibitor Kazal type 1 (SPINK1) and its N34S variant

论文作者

Buchholz, Ina, Nagel, Felix, Klein, Annelie, Wagh, Preshit R., Mahajan, Ujjwal M., Greinacher, Andreas, Lerch, Markus M., Mayerle, Julia, Delcea, Mihaela

论文摘要

丝氨酸蛋白酶抑制剂1型(Spink1)基因中最常见的突变之一是N34S变体,与慢性胰腺炎密切相关。尽管假定N34S突变构成了高风险因素,但潜在的病理机制仍然未知。在本研究中,我们使用生物物理方法研究了生理应激因素对Spink1蛋白结构和胰蛋白酶抑制剂功能的影响。我们的循环二分性能光谱数据显示,Spink1和N34S突变体的二级结构差异表明突变引起的蛋白质结构变化是可能与疾病相关的损害。我们进一步证实,Spink1(KD为0.15 +/- 0.06 nm)及其N34S变体(KD为0.08 +/- 0.02 nm)均具有相似的结合亲和力和对胰蛋白酶的抑制作用,如表面等离子体上的结合和胰蛋白酶抑制剂研究所示。我们发现,诸如离子浓度改变(即钾,钙),温度变化以及环境pH值等应力条件会导致Spink1和N34S突变体之间胰蛋白酶抑制的差异无关。但是,我们已经表明,环境pH值以不同的方式诱导两个Spink1构建体的结构变化。我们的发现表明,N34S变体中的蛋白质结构变化是Spink1和环境pH值的损害,这是一种可能在胰腺炎疾病进展中发挥作用的触发因素。

One of the most common mutations in the serine protease inhibitor Kazal type 1 (SPINK1) gene is the N34S variant which is strongly associated with chronic pancreatitis. Although it is assumed that N34S mutation constitutes a high-risk factor, the underlying pathologic mechanism is still unknown. In the present study, we investigated the impact of physiological stress factors on SPINK1 protein structure and trypsin inhibitor function using biophysical methods. Our circular dichroism spectroscopy data revealed differences in the secondary structure of SPINK1 and N34S mutant suggesting protein structural changes induced by the mutation as an impairment that could be disease-relevant. We further confirmed that both SPINK1 (KD of 0.15 +/- 0.06 nM) and its N34S variant (KD of 0.08 +/- 0.02 nM) have similar binding affinity and inhibitory effect towards trypsin as shown by surface plasmon resonance and trypsin inhibition assay studies, respectively. We found that stress conditions such as altered ion concentrations (i.e. potassium, calcium), temperature shifts, as well as environmental pH lead to insignificant differences in trypsin inhibition between SPINK1 and N34S mutant. However, we have shown that the environmental pH induces structural changes in both SPINK1 constructs in a different manner. Our findings suggest protein structural changes in the N34S variant as an impairment of SPINK1 and environmental pH shift as a trigger that could play a role in disease progression of pancreatitis.

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