首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Bacterial-type Phosphoenolpyruvate Carboxylase (PEPC) Functions as a Catalytic and Regulatory Subunit of the Novel Class-2 PEPC Complex of Vascular Plants
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Bacterial-type Phosphoenolpyruvate Carboxylase (PEPC) Functions as a Catalytic and Regulatory Subunit of the Novel Class-2 PEPC Complex of Vascular Plants

机译:细菌型磷酸烯醇丙酮酸羧化酶(PEPC)的功能和新型植物的2类PEPC复合物的催化和调节亚基。

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摘要

Phosphoenolpyruvate carboxylase (PEPC) is a tightly regulated anaplerotic enzyme situated at a major branch point of the plant C metabolism. Two distinct oligomeric classes of PEPC occur in the triglyceride-rich endosperm of developing castor oil seeds (COS). Class-1 PEPC is a typical homotetramer composed of identical 107-kDa plant-type PEPC (PTPC) subunits (encoded by RcPpc3), whereas the novel Class-2 PEPC 910-kDa hetero-octameric complex arises from a tight interaction between Class-1 PEPC and distantly related 118-kDa bacterial-type PEPC (BTPC) polypeptides (encoded by RcPpc4). Here, COS BTPC was expressed from full-length RcPpc4 cDNA in Escherichia coli as an active PEPC that exhibited unusual properties relative to PTPCs, including a tendency to form large aggregates, enhanced thermal stability, a high Km(PEP), and insensitivity to metabolite effectors. A chimeric 900-kDa Class-2 PEPC hetero-octamer having a 1:1 stoichiometry of BTPC:PTPC subunits was isolated from a mixture of clarified extracts containing recombinant RcPPC4 and an Arabidopsis thaliana Class-1 PEPC (the PTPC, AtPPC3). The purified Class-2 PEPC exhibited biphasic PEP saturation kinetics with high and low affinity sites attributed to its AtPPC3 and RcPPC4 subunits, respectively. The RcPPC4 subunits: (i) catalyzed the majority of the Class-2 PEPC Vmax, particularly in the presence of the inhibitor l-malate, and (ii) also functioned as Class-2 PEPC regulatory subunits by modulating PEP binding and catalytic potential of its AtPPC3 subunits. BTPCs appear to associate with PTPCs to form stable Class-2 PEPC complexes in vivo that are hypothesized to maintain high flux from PEP under physiological conditions that would otherwise inhibit Class-1 PEPCs.
机译:磷酸烯醇丙酮酸羧化酶(PEPC)是一种严格调节的抗酶,位于植物C代谢的主要分支点。在发育中的蓖麻油种子(COS)的富含甘油三酸酯的胚乳中出现了两种不同的PEPC低聚物类型。 1类PEPC是典型的均四聚体,由相同的107 kDa植物型PEPC(PTPC)亚基(由RcPpc3编码)组成,而新型2类PEPC 910 kDa异八聚体复合物则是由2类PEPC之间的紧密相互作用产生的1 PEPC和远距离相关的118 kDa细菌型PEPC(BTPC)多肽(由RcPpc4编码)。在这里,COS BTPC是从大肠杆菌中的全长RcPpc4 cDNA中表达出来的,是一种活性PEPC,相对于PTPC具有不寻常的特性,包括形成大的聚集体,增强的热稳定性,高的Km(PEP)以及对代谢物不敏感的趋势。效应子。从含有重组RcPPC4和拟南芥1类PEPC(PTPC,AtPPC3)的澄清提取物的混合物中分离出具有1:1化学计量的BTPC:PTPC亚基的嵌合900 kDa 2类PEPC杂八聚体。纯化的2类PEPC表现出两相PEP饱和动力学,具有分别归因于其AtPPC3和RcPPC4亚基的高和低亲和力位点。 RcPPC4亚基:(i)催化大多数2类PEPC Vmax,特别是在存在抑制剂l-苹果酸的情况下,以及(ii)还通过调节PEP结合和PTP的催化潜能而充当2类PEPC调节亚基。其AtPPC3亚基。 BTPC似乎与PTPC结​​合,在体内形成稳定的2类PEPC复合物,据推测在生理条件下可以维持PEP的高通量,否则会抑制1类PEPC。

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