Laboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e Materiais, Campinas, SP CP6192, Brazil.
Plant Physiol. 2013 Jul;162(3):1311-23. doi: 10.1104/pp.113.218339. Epub 2013 May 24.
The citrus (Citrus sinensis) cyclophilin CsCyp is a target of the Xanthomonas citri transcription activator-like effector PthA, required to elicit cankers on citrus. CsCyp binds the citrus thioredoxin CsTdx and the carboxyl-terminal domain of RNA polymerase II and is a divergent cyclophilin that carries the additional loop KSGKPLH, invariable cysteine (Cys) residues Cys-40 and Cys-168, and the conserved glutamate (Glu) Glu-83. Despite the suggested roles in ATP and metal binding, the functions of these unique structural elements remain unknown. Here, we show that the conserved Cys residues form a disulfide bond that inactivates the enzyme, whereas Glu-83, which belongs to the catalytic loop and is also critical for enzyme activity, is anchored to the divergent loop to maintain the active site open. In addition, we demonstrate that Cys-40 and Cys-168 are required for the interaction with CsTdx and that CsCyp binds the citrus carboxyl-terminal domain of RNA polymerase II YSPSAP repeat. Our data support a model where formation of the Cys-40-Cys-168 disulfide bond induces a conformational change that disrupts the interaction of the divergent and catalytic loops, via Glu-83, causing the active site to close. This suggests a new type of allosteric regulation in divergent cyclophilins, involving disulfide bond formation and a loop-displacement mechanism.
柑橘环孢素 CsCyp 是柑橘溃疡病菌转录激活样效应物 PthA 的靶标,该蛋白在诱导柑橘溃疡病方面发挥作用。CsCyp 可与柑橘硫氧还蛋白 CsTdx 和 RNA 聚合酶 II 的羧基末端结构域结合,是一种具有独特结构的环孢素,携带额外的 KSGKPLH 环、不变的半胱氨酸(Cys)残基 Cys-40 和 Cys-168,以及保守的谷氨酸(Glu)Glu-83。尽管有报道称该蛋白在 ATP 和金属结合中发挥作用,但这些独特结构元件的功能仍不清楚。本文作者展示了保守的 Cys 残基形成二硫键,使酶失活,而属于催化环且对酶活性也至关重要的 Glu-83 锚定在发散环上,以保持活性部位开放。此外,作者还证明了 Cys-40 和 Cys-168 对于与 CsTdx 的相互作用是必需的,并且 CsCyp 可与柑橘 RNA 聚合酶 II YSPSAP 重复的羧基末端结构域结合。这些数据支持了一个模型,即 Cys-40-Cys-168 二硫键的形成诱导构象变化,通过 Glu-83 破坏发散环和催化环的相互作用,导致活性部位关闭。这表明发散环孢素存在一种新的变构调节机制,涉及二硫键形成和环置换机制。