...
首页> 外文期刊>The Journal of biological chemistry >The Ternary Complex of PrnB (the Second Enzyme in the Pyrrolnitrin Biosynthesis Pathway), Tryptophan, and Cyanide Yields New Mechanistic Insights into the Indolamine Dioxygenase Superfamily
【24h】

The Ternary Complex of PrnB (the Second Enzyme in the Pyrrolnitrin Biosynthesis Pathway), Tryptophan, and Cyanide Yields New Mechanistic Insights into the Indolamine Dioxygenase Superfamily

机译:PRNB的三元综合体(吡咯素生物合成途径中的第二种酶),色氨酸和氰化物产生新的机械洞察室内含吲哚胺二氧化酶

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Pyrrolnitrin (3-chloro-4-(2′-nitro-3′-chlorophenyl)pyrrole) is a broad-spectrum antifungal compound isolated from Pseudomonas pyrrocinia. Four enzymes (PrnA, PrnB, PrnC, and PrnD) are required for pyrrolnitrin biosynthesis from tryptophan. PrnB rearranges the indole ring of 7-Cl-l-tryptophan and eliminates the carboxylate group. PrnB shows robust activity in vivo, but in vitro activity for PrnB under defined conditions remains undetected. The structure of PrnB establishes that the enzyme belongs to the heme b-dependent indoleamine 2,3-dioxygenase (IDO) and tryptophan 2,3-dioxygenase (TDO) family. We report the cyanide complex of PrnB and two ternary complexes with both l-tryptophan or 7-Cl-l-tryptophan and cyanide. The latter two complexes are essentially identical and mimic the likely catalytic ternary complex that occurs during turnover. In the cyanide ternary complexes, a loop previously disordered becomes ordered, contributing to the binding of substrates. The conformations of the bound tryptophan substrates are changed from that seen previously in the binary complexes. In l-tryptophan ternary complex, the indole ring now adopts the same orientation as seen in the PrnB binary complexes with other tryptophan substrates. The amide and carboxylate group of the substrate are orientated in a new conformation. Tyr321 and Ser332 play a key role in binding these groups. The structures suggest that catalysis requires an l-configured substrate. Isothermal titration calorimetry data suggest d-tryptophan does not bind after cyanide (or oxygen) coordinates with the distal (or sixth) site of heme. This is the first ternary complex with a tryptophan substrate of a member of the tryptophan dioxygenase superfamily and has mechanistic implications.
机译:吡咯肾素(3-氯-4-(2'-硝基-3'-氯苯基)吡咯)是一种从假鼠吡罗科尼菌分离的广谱抗真菌化合物。来自色氨酸的吡咯藻生物合成需要四种酶(PRNA,PRNB,PRNC和PRND)。 PRNB重新排列了7-Cl-L-色氨酸的吲哚环,并消除羧酸盐组。 PRNB显示体内的鲁棒活性,但在定义的条件下PRNB的体外活性仍未被发现。 PRNB的结构确定酶属于血红素B依赖性吲哚胺2,3-二氧化根酶(IDO)和色氨酸2,3-二氧化根酶(TDO)家族。我们向L-色氨酸或7-Cl-L-色氨酸和氰化物报告PRNB的氰化物络合物和两种三元复合物。后两种复合物基本上相同,仿模在周转期间发生的催化三元复合物。在氰化物三元复合物中,先前无序的环路变得有序,有助于衬底的结合。结合的色氨酸衬底的构象是从二元复合物中之前所见的改变。在L-色氨酸三元复合物中,吲哚环现在采用与其他色氨酸基材的PRNB二元复合物中相同的取向。酰胺和羧酸盐基团以新的构象定向。 Tyr321和Ser332在绑定这些组中发挥关键作用。该结构表明,催化需要L配置的基板。等温滴定热量测定数据表明D-色氨酸不会在氰化物(或氧)坐标后与血红素的远端(或六)位点结合。这是第一三元复合物,其具有色氨酸二氧化根酶的成员的色氨酸底物超家族,具有机械意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号