Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Saulėtekio 7, Vilnius LT-10257, Lithuania.
Center for Physical Sciences and Technology, Saulėtekio 3, Vilnius LT-10257, Lithuania.
J Inorg Biochem. 2024 Jul;256:112547. doi: 10.1016/j.jinorgbio.2024.112547. Epub 2024 Apr 1.
Transition metal ions are structural and catalytic cofactors of many proteins including human carbonic anhydrase (CA), a Zn-dependent hydrolase. Sulfonamide inhibitors of CA recognize and form a coordination bond with the Zn ion located in the active site of the enzyme. The Zn ion may be removed or substituted with other metal ions. Such CA protein retains the structure and could serve as a tool to study metal ion role in the recognition and binding affinity of inhibitor molecules. We measured the affinities of selected divalent transition metal ions, including Mn, Fe, Co, Ni, Cu, Cd, Hg, and Zn to metal-free CA isozymes CA I, CA II, and CAIX by fluorescence-based thermal shift assay, prepared metal-substituted CAs, and determined binding of diverse sulfonamide compounds. Sulfonamide inhibitor binding to metal substituted CA followed a U-shape pH dependence. The binding was dissected to contributing binding-linked reactions and the intrinsic binding reaction affinity was calculated. This value is independent of pH and protonation reactions that occur simultaneously upon binding native CA and as demonstrated here, to metal substituted CA. Sulfonamide inhibitor binding to cancer-associated isozyme CAIX diminished in the order: Zn > Co > Hg > Cu > Cd > Mn > Ni. Energetic contribution of the inhibitor-metal coordination bond was determined for all above metals. The understanding of the principles of metal influence on ligand affinity and selectivity should help design new drugs targeting metalloenzymes.
过渡金属离子是许多蛋白质的结构和催化辅助因子,包括人类碳酸酐酶(CA),一种 Zn 依赖性水解酶。CA 的磺酰胺抑制剂识别并与位于酶活性部位的 Zn 离子形成配位键。Zn 离子可能被其他金属离子取代或取代。这种 CA 蛋白保留了结构,可以作为研究金属离子在抑制剂分子识别和结合亲和力中的作用的工具。我们通过基于荧光的热移位测定法测量了选定的二价过渡金属离子(包括 Mn、Fe、Co、Ni、Cu、Cd、Hg 和 Zn)与无金属 CA 同工酶 CA I、CA II 和 CAIX 的亲和力,制备了金属取代的 CA,并确定了各种磺酰胺化合物的结合情况。磺酰胺抑制剂与金属取代 CA 的结合呈 U 形 pH 依赖性。结合被剖析为贡献结合的反应,并且计算了内在结合反应亲和力。该值独立于 pH 和与结合天然 CA 同时发生的质子化反应,如这里所示,与金属取代 CA 也同时发生。磺酰胺抑制剂与癌症相关同工酶 CAIX 的结合顺序为:Zn > Co > Hg > Cu > Cd > Mn > Ni。确定了所有上述金属的抑制剂-金属配位键的能量贡献。对金属对配体亲和力和选择性影响的原理的理解应该有助于设计针对金属酶的新药。