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Role of asparaginase variable loop at the carboxyl terminal of the alpha subunit in the determination of substrate preference in plants

机译:α亚基羧基末端的天冬酰胺酶可变环在确定植物底物偏好中的作用

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摘要

Structural determinants responsible for the substrate preference of the potassium-independent (ASPGA1) and -dependent (ASPGB1) asparaginases from Arabidopsis thaliana have been investigated. Like ASPGA1, ASPGB1 was found to be catalytically active with both l-Asn and β-Asp-His as substrates, contrary to a previous report. However, ASPGB1 had a 45-fold higher specific activity with Asn as substrate than ASPGA1. A divergent sequence between the two enzymes forms a variable loop at the C-terminal of the alpha subunit. The results of dynamic simulations have previously implicated a movement of the C-terminus in the allosteric transduction of K+-binding at the surface of LjNSE1 asparaginase. In the crystal structure of Lupinus luteus asparaginase, most residues in this segment cannot be visualized due to a weak electron density. Exchanging the variable loop in ASPGA1 with that from ASPGB1 increased the affinity for Asn, with a 320-fold reduction in K m value. Homology modeling identified a residue specific to ASPGB1, Phe162, preceding the variable loop, whose side chain is located in proximity to the beta-carboxylate group of the product aspartate, and to Gly246, a residue participating in an oxyanion hole which stabilizes a negative charge forming on the side chain oxygen of asparagine during catalysis. Replacement with the corresponding leucine from ASPGA1 specifically lowered the V max value with Asn as substrate by 8.4-fold.
机译:研究了负责拟南芥中钾依赖性天冬酰胺酶(ASPGA1)和β-依赖性天冬酰胺酶(ASPGB1)的底物偏好的结构决定簇。与ASPGA1一样,发现ASPGB1具有l-Asn和β-Asp-His作为底物的催化活性,这与先前的报道相反。但是,以Asn为底物的ASPGB1比活性比ASPGA1高45倍。两种酶之间的差异序列在α亚基的C端形成一个可变环。动态模拟的结果先前暗示了C末端在LjNSE1天冬酰胺酶表面的K +结合的变构转导中的运动。在黄羽扇豆天冬酰胺酶的晶体结构中,由于弱的电子密度,无法看到该区段中的大多数残基。将ASPGA1中的可变循环与ASPGB1中的可变循环交换可以提高对Asn的亲和力,K m值减少320倍。同源性建模在可变环之前确定了ASPGB1 Phe162 特有的残基,其侧链位于产物天冬氨酸的β-羧酸根附近,而Gly246 则是参与该残基的残基。氧阴离子孔使在催化过程中在天冬酰胺的侧链氧上形成的负电荷稳定。用ASPGA1中相应的亮氨酸替代可以使Asn作为底物的V max值降低8.4倍。

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