State Key Laboratory of Silkworm Genome Biology, Biological Science Research Center, Southwest University, Beibei, Chongqing 400715, China.
College of Biotechnology, Southwest University, Beibei, Chongqing 400715, China.
Int J Mol Sci. 2019 Jul 31;20(15):3732. doi: 10.3390/ijms20153732.
Adenosine kinase (ADK) is the first enzyme in the adenosine remediation pathway that catalyzes adenosine phosphorylation into adenosine monophosphate, thus regulating adenosine homeostasis in cells. To obtain new insights into ADK from (BmADK), we obtained recombinant BmADK, and analyzed its activity, structure, and function. Gel-filtration showed BmADK was a monomer with molecular weight of approximately 38 kDa. Circular dichroism spectra indicated BmADK had 36.8% α-helix and 29.9% β-strand structures, respectively. The structure of BmADK was stable in pH 5.0-11.0, and not affected under 30 °C. The melting temperature and the enthalpy and entropy changes in the thermal transition of BmADK were 46.51 ± 0.50 °C, 253.43 ± 0.20 KJ/mol, and 0.79 ± 0.01 KJ/(mol·K), respectively. Site-directed mutagenesis demonstrated G68, S201, E229, and D303 were key amino acids for BmADK structure and activity. In particular, S201A mutation significantly increased the α-helix content of BmADK and its activity. BmADK was located in the cytoplasm and highly expressed in the silk gland during the pre-pupal stage. RNA interference revealed the downregulation of decreased , , , , and expression, indicating it was likely involved in 20E signaling, apoptosis, and autophagy to regulate silk gland degeneration and silkworm metamorphosis. Our study greatly expanded the knowledge on the activity, structure, and role of ADK.
腺苷激酶(ADK)是腺苷修复途径中的第一个酶,可将腺苷磷酸化为单磷酸腺苷,从而调节细胞内的腺苷稳态。为了从 (BmADK)获得对 ADK 的新认识,我们获得了重组 BmADK,并分析了其活性、结构和功能。凝胶过滤显示 BmADK 是一种单体,分子量约为 38 kDa。圆二色性光谱表明 BmADK 分别具有 36.8%的α-螺旋和 29.9%的β-折叠结构。BmADK 的结构在 pH 5.0-11.0 之间稳定,在 30°C 以下不受影响。BmADK 的热变性的熔点和焓变及熵变分别为 46.51 ± 0.50°C、253.43 ± 0.20 KJ/mol 和 0.79 ± 0.01 KJ/(mol·K)。定点突变表明 G68、S201、E229 和 D303 是 BmADK 结构和活性的关键氨基酸。特别是,S201A 突变显著增加了 BmADK 的α-螺旋含量及其活性。BmADK 位于细胞质中,在前蛹期高度表达于丝腺。RNA 干扰表明 下调 ,导致 、 、 、 和 的表达降低,表明其可能参与 20E 信号转导、细胞凋亡和自噬,以调节丝腺退化和家蚕变态。本研究极大地扩展了对 ADK 的活性、结构和作用的认识。