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Impact of cysteine variants on the structure activity and stability of recombinant human α-galactosidase A

机译:半胱氨酸变体对重组人α-半乳糖苷酶A的结构活性和稳定性的影响

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摘要

Recombinant human α-galactosidase A (rhαGal) is a homodimeric glycoprotein deficient in Fabry disease, a lysosomal storage disorder. In this study, each cysteine residue in rhαGal was replaced with serine to understand the role each cysteine plays in the enzyme structure, function, and stability. Conditioned media from transfected HEK293 cells were assayed for rhαGal expression and enzymatic activity. Activity was only detected in the wild type control and in mutants substituting the free cysteine residues (C90S, C174S, and the C90S/C174S). Cysteine-to-serine substitutions at the other sites lead to the loss of expression and/or activity, consistent with their involvement in the disulfide bonds found in the crystal structure. Purification and further characterization confirmed that the C90S, C174S, and the C90S/C174S mutants are enzymatically active, structurally intact and thermodynamically stable as measured by circular dichroism and thermal denaturation. The purified inactive C142S mutant appeared to have lost part of its alpha-helix secondary structure and had a lower apparent melting temperature. Saturation mutagenesis study on Cys90 and Cys174 resulted in partial loss of activity for Cys174 mutants but multiple mutants at Cys90 with up to 87% higher enzymatic activity (C90T) compared to wild type, suggesting that the two free cysteines play differential roles and that the activity of the enzyme can be modulated by side chain interactions of the free Cys residues. These results enhanced our understanding of rhαGal structure and function, particularly the critical roles that cysteines play in structure, stability, and enzymatic activity.
机译:重组人α-半乳糖苷酶A(rhαGal)是缺乏Fabry病(一种溶酶体贮积病)的同型二聚体糖蛋白。在这项研究中,将rhαGal中的每个半胱氨酸残基替换为丝氨酸,以了解每个半胱氨酸在酶的结构,功能和稳定性中的作用。分析来自转染的HEK293细胞的条件培养基的rhαGal表达和酶活性。仅在野生型对照和替代游离半胱氨酸残基的突变体(C90S,C174S和C90S / C174S)中检测到活性。在其他位点的半胱氨酸到丝氨酸的取代导致表达和/或活性的丧失,这与它们参与晶体结构中发现的二硫键一致。纯化和进一步鉴定证实,C90S,C174S和C90S / C174S突变体具有酶活性,结构上完整且热力学稳定,如通过圆二色性和热变性测定。纯化的无活性的C142S突变体似乎失去了其α-螺旋二级结构的一部分,并且具有较低的表观熔解温度。 Cys90和Cys174的饱和诱变研究导致Cys174突变体的活性部分丧失,但Cys90的多个突变体的酶促活性(C90T)比野生型高出87%,这表明两个游离的半胱氨酸起着不同的作用,并且该活性可以通过游离的Cys残基的侧链相互作用来调节酶的活性。这些结果增强了我们对rhαGal结构和功能的理解,特别是半胱氨酸在结构,稳定性和酶活性中的关键作用。

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