Baban Berevan A, Vinod Madhavan P, Tanner John J, Becker Donald F
Department of Chemistry and Biochemistry, University of Missouri-St. Louis, St. Louis, MO 63121, USA.
Biochim Biophys Acta. 2004 Sep 1;1701(1-2):49-59. doi: 10.1016/j.bbapap.2004.06.001.
The PutA flavoprotein from Escherichia coli combines DNA-binding, proline dehydrogenase (PRODH), and Delta(1)-pyrroline-5-carboxylate dehydrogenase (P5CDH) activities onto a single polypeptide. Recently, an X-ray crystal structure of PutA residues 87-612 was solved which identified a D370-Y540 hydrogen bond pair in the PRODH active site that appears to have an important role in shaping proline binding and the FAD redox environment. To examine the role of D370-Y540 in the PRODH active site, mutants D370A, Y540F, and D370A/Y540F were characterized in a form of PutA containing only residues 86-601 (PutA86-601) designed to mimic the known structural region of PutA (87-612). Disruption of the D370-Y540 pair only slightly diminished k(cat), while more noticeable affects were observed in K(m). The mutant D370A/Y540F showed the most significant changes in the pH dependence of k(cat)/K(m) and K(m) relative to wild-type PutA86-601 with an apparent pK(a) value of about 8.2 for the pH-dependent decrease in K(m). From the pH profile of D370A/Y540F inhibition by l-tetrahydro-2-furoic acid (l-THFA), the pH dependency of K(m) in D370A/Y540F is interpreted as resulting from the deprotonation of the proline amine in the E-S complex. Replacement of D370 and Y540 produces divergent effects on the E(m) for bound FAD. At pH 7.0, E(m) values of -0.026, -0.089 and -0.042 V were determined for the two-electron reduction of bound FAD in D370A, Y540F and D370A/Y540F, respectively. The 40-mV positive shift in E(m) determined for D370A relative to wild-type PutA86-601 (E(m)=-0.066 V, pH 7.0) indicates D370 has a key role in modulating the FAD redox environment.
来自大肠杆菌的PutA黄素蛋白将DNA结合、脯氨酸脱氢酶(PRODH)和Δ¹-吡咯啉-5-羧酸脱氢酶(P5CDH)活性整合到一条单一的多肽链上。最近,解析了PutA 87 - 612位残基的X射线晶体结构,该结构确定了PRODH活性位点中的一个D370 - Y540氢键对,其似乎在塑造脯氨酸结合和FAD氧化还原环境方面发挥着重要作用。为了研究D370 - Y540在PRODH活性位点中的作用,对仅包含86 - 601位残基的PutA形式(PutA86 - 601)中的D370A、Y540F和D370A/Y540F突变体进行了表征,该形式旨在模拟PutA的已知结构区域(87 - 612)。D370 - Y540对的破坏仅轻微降低了k(cat),而在K(m)中观察到了更明显的影响。相对于野生型PutA86 - 601,突变体D370A/Y540F在k(cat)/K(m)和K(m)的pH依赖性方面表现出最显著的变化,K(m)的pH依赖性降低的表观pK(a)值约为8.2。从l - 四氢 - 2 - 呋喃甲酸(l - THFA)对D370A/Y540F的抑制pH曲线来看,D370A/Y540F中K(m)的pH依赖性被解释为是由于E - S复合物中脯氨酸胺的去质子化所致。D370和Y540的替换对结合FAD的E(m)产生了不同的影响。在pH 7.0时,D370A、Y540F和D370A/Y540F中结合FAD的双电子还原的E(m)值分别测定为 - 0.026、 - 0.089和 - 0.042 V。相对于野生型PutA86 - 601(E(m)= - 0.066 V,pH 7.0),D370A的E(m)有40 - mV的正向偏移,这表明D370在调节FAD氧化还原环境中起关键作用。