a Center for Interdisciplinary Research in Basic Sciences , Jamia Millia Islamia, Jamia Nagar, New Delhi 110025 , India.
b Department of Chemistry , Durban University of Technology , Durban 4000 , South Africa.
J Biomol Struct Dyn. 2017 Feb;35(2):449-461. doi: 10.1080/07391102.2016.1149097. Epub 2016 Apr 4.
Mitochondrial carbonic anhydrase VA (CAVA) catalyzes the hydration of carbon dioxide to produce proton and bicarbonate which is primarily expressed in the mitochondrial matrix of liver, and involved in numerous physiological processes including lipogenesis, insulin secretion from pancreatic cells, ureagenesis, gluconeogenesis, and neuronal transmission. To understand the effect of pH on the structure, function, and stability of CAVA, we employed spectroscopic techniques such as circular dichroism, fluorescence, and absorbance measurements in wide range of pH (from pH 2.0 to pH 11.5). CAVA showed an aggregation at acidic pH range from pH 2.0 to pH 5.0. However, it remains stable and maintains its secondary structure in the pH range, pH 7.0-pH 11.5. Furthermore, this enzyme has an appreciable activity at more than pH 7.0 (7.0 < pH ≤ 11.5) with maximum activity at pH 9.0. The maximal values of k and k/K at pH 9.0 are 3.7 × 10 s and 5.5 × 10 M s, respectively. However, this enzyme loses its activity in the acidic pH range. We further performed 20-ns molecular dynamics simulation of CAVA to see the dynamics at different pH values. An excellent agreement was observed between in silico and in vitro studies. This study provides an insight into the activity of CAVA in the pH range of subcellular environment.
线粒体碳酸酐rase VA(CAVA)催化二氧化碳水合生成质子和碳酸氢根,主要表达于肝线粒体基质,参与多种生理过程,包括脂肪生成、胰腺细胞胰岛素分泌、尿素生成、糖异生和神经元传递。为了了解 pH 值对 CAVA 的结构、功能和稳定性的影响,我们采用了光谱技术,如圆二色性、荧光和吸光度测量,研究了广泛的 pH 值范围(从 pH 2.0 到 pH 11.5)。CAVA 在 pH 2.0 到 pH 5.0 的酸性 pH 值范围内表现出聚集。然而,它在 pH 值范围 pH 7.0-pH 11.5 内保持稳定并保持其二级结构。此外,这种酶在 pH 值高于 7.0(7.0<pH≤11.5)时具有相当的活性,在 pH 9.0 时具有最大活性。在 pH 9.0 时,k 和 k/K 的最大值分别为 3.7×10 s 和 5.5×10 M s。然而,这种酶在酸性 pH 值范围内失去活性。我们进一步对 CAVA 进行了 20-ns 的分子动力学模拟,以观察不同 pH 值下的动力学。在计算机模拟和体外研究之间观察到了极好的一致性。这项研究提供了对亚细胞环境 pH 值范围内 CAVA 活性的深入了解。