Lin Pen-Jen, Straight David L, Stafford Darrel W
Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
J Biol Chem. 2004 Feb 20;279(8):6560-6. doi: 10.1074/jbc.M312239200. Epub 2003 Dec 2.
Propeptides of the vitamin K-dependent proteins bind to an exosite on gamma-glutamyl carboxylase; while they are bound, multiple glutamic acids in the gamma-carboxyglutamic acid (Gla) domain are carboxylated. The role of the propeptides has been studied extensively; however, the role of the Gla domain in substrate binding is less well understood. We used kinetic and fluorescence techniques to investigate the interactions of the carboxylase with a substrate containing the propeptide and Gla domain of factor IX (FIXproGla41). In addition, we characterized the effect of the Gla domain and carboxylation on propeptide and substrate binding. For the propeptide of factor IX (proFIX18), FIXproGla41, and carboxylated FIXproGla41, the Kd values were 50, 2.5, and 19.7 nM and the koff values were 273 x 10(-5), 9 x 10(-5), and 37 x 10(-5) s(-1), respectively. The koff of proFIX18 is reduced 3-fold by FLEEL and 9-fold by the Gla domain (residues 1-46) of FIX. The pre-steady state rate constants for carboxylation of FIXproGla41 was 0.02 s(-1) in enzyme excess and 0.016 s(-1) in substrate excess. The steady state rate in substrate excess is 4.5 x 10(-4) s(-1). These results demonstrate the following. 1) The pre-steady state carboxylation rate constant of FIXproGla41 is significantly slower than that of FLEEL. 2) The Gla domain plays an allosteric role in substrate-enzyme interactions. 3) Carboxylation reduces the allosteric effect. 4) The similarity between the steady state carboxylation rate constant and product dissociation rate constant suggests that product release is rate-limiting. 5) The increased dissociation rate after carboxylation contributes to the release of product.
维生素K依赖性蛋白的前肽与γ-谷氨酰羧化酶上的一个外位点结合;在前肽结合期间,γ-羧基谷氨酸(Gla)结构域中的多个谷氨酸会发生羧化。前肽的作用已得到广泛研究;然而,Gla结构域在底物结合中的作用却鲜为人知。我们运用动力学和荧光技术来研究羧化酶与包含因子IX(FIXproGla41)前肽和Gla结构域的底物之间的相互作用。此外,我们还对Gla结构域和羧化作用对前肽及底物结合的影响进行了表征。对于因子IX的前肽(proFIX18)、FIXproGla41以及羧化的FIXproGla41,解离常数(Kd)值分别为50、2.5和19.7 nM,解离速率常数(koff)分别为273×10⁻⁵、9×10⁻⁵和37×10⁻⁵ s⁻¹。proFIX18的koff因FLEEL而降低3倍,因FIX的Gla结构域(第1 - 46位残基)而降低9倍。在酶过量时,FIXproGla41羧化的预稳态速率常数为0.02 s⁻¹,在底物过量时为0.016 s⁻¹。底物过量时的稳态速率为4.5×10⁻⁴ s⁻¹。这些结果表明:1)FIXproGla41的预稳态羧化速率常数显著慢于FLEEL的。2)Gla结构域在底物 - 酶相互作用中起变构作用。3)羧化作用会降低变构效应。4)稳态羧化速率常数与产物解离速率常数之间的相似性表明产物释放是限速步骤。5)羧化后解离速率的增加有助于产物的释放。