Fujita Kiyohito, Tanaka Kan, Sadaie Yoshito, Ohta Niji
Department of Molecular Biology, Faculty of Science, Saitama University, Saitama-City, Saitama, Japan.
Genes Genet Syst. 2008 Apr;83(2):135-42. doi: 10.1266/ggs.83.135.
CbbX is believed to be a transcriptional regulator of the subunit genes (rbcL and rbcS) of RuBisCO (Ribulose 1,5-bisphosphate carboxylase/oxygenase) as well as possibly a molecular chaperon of RuBisCO subunit assembly. The unicellular red alga Cyanidioschyzon merolae strain 10D possesses two distinct cbbX genes; one is part of the plastid genome and the other is found in the cell nucleus, whereas the RuBisCO operon (rbcL-rbcS-cbbX) is located only on the plastid genome. We examined the role of CbbX proteins of C. merolae in the expression of the RuBisCO operon. First, His-tagged nuclear and plastid CbbX proteins were produced in Escherichia coli and purified by affinity column chromatography. Both proteins showed binding activity to upstream of the coding region of rbcL. Yeast two hybrid analysis showed direct interaction between nuclear and plastid CbbX proteins but no interaction were found among CbbX, RbcL and RbcS. Then the transcription initiation site of the RuBisCO operon of C. merolae was determined. Next, in order to examine the role of CbbX in vivo, we constructed a plasmid carrying the promoter region of the RuBisCO operon fused to Escherichia coli lacZ, and introduced it into E. coli cells into which a cloned nuclear or plastid cbbX gene under IPTG inducible promoter control was also introduced. Expression of LacZ in the transformed E.coli was observed. Enforced expression of either one of the cbbX genes resulted in a remarkable reduction of lacZ expression suggesting that CbbXs are rather transcriptional regulators than the molecular chaperon of RuBisCO. We discuss the mechanism by which the nuclear and plastid CbbX proteins regulate the RuBisCO operon of C. merolae.
CbbX被认为是核酮糖-1,5-二磷酸羧化酶/加氧酶(RuBisCO)亚基基因(rbcL和rbcS)的转录调节因子,也可能是RuBisCO亚基组装的分子伴侣。单细胞红藻梅洛拉氏蓝细菌10D菌株拥有两个不同的cbbX基因;一个是质体基因组的一部分,另一个存在于细胞核中,而RuBisCO操纵子(rbcL-rbcS-cbbX)仅位于质体基因组上。我们研究了梅洛拉氏蓝细菌CbbX蛋白在RuBisCO操纵子表达中的作用。首先,在大肠杆菌中产生了带有His标签的细胞核和质体CbbX蛋白,并通过亲和柱层析进行纯化。两种蛋白都显示出与rbcL编码区上游的结合活性。酵母双杂交分析表明细胞核和质体CbbX蛋白之间存在直接相互作用,但未发现CbbX、RbcL和RbcS之间存在相互作用。然后确定了梅洛拉氏蓝细菌RuBisCO操纵子的转录起始位点。接下来,为了研究CbbX在体内的作用,我们构建了一个携带与大肠杆菌lacZ融合的RuBisCO操纵子启动子区域的质粒,并将其导入也导入了在IPTG诱导型启动子控制下克隆的细胞核或质体cbbX基因的大肠杆菌细胞中。观察到转化后的大肠杆菌中LacZ的表达。任一cbbX基因的强制表达导致lacZ表达显著降低,这表明CbbX更像是转录调节因子而非RuBisCO的分子伴侣。我们讨论了细胞核和质体CbbX蛋白调节梅洛拉氏蓝细菌RuBisCO操纵子的机制。