Graduate School of Integrated Science and Technology, Shizuoka University, 836 Ohya, Suruga, Shizuoka 422-8529, Japan.
Core Research for Evolutional Science and Technology, Japan Science and Technology, Shizuoka University, 836 Ohya, Suruga, Shizuoka 422-8529, Japan.
Biochem J. 2021 Mar 12;478(5):1043-1059. doi: 10.1042/BCJ20210013.
Cyanobacteriochromes are linear tetrapyrrole-binding photoreceptors produced by cyanobacteria. Their chromophore-binding GAF domains are categorized into many lineages. Among them, dual Cys-type cyanobacteriochrome GAF domains possessing not only a highly conserved 'first Cys' but also a 'second Cys' are found from multiple lineages. The first Cys stably attaches to C31 of the A-ring, while the second Cys mostly shows reversible ligation to the C10 of the chromophore. Notably, the position of the second Cys in the primary sequence is diversified, and the most abundant dual Cys-type GAF domains have a 'second Cys' within the DXCF motif, which are called DXCF GAF domains. It has been long known that the second Cys in the DXCF GAF domains not only shows the reversible ligation but also is involved in isomerization activity (reduction in C4=C5 double bond) from the initially incorporated phycocyanobilin to phycoviolobilin. However, comprehensive site-directed mutagenesis on the DXCF GAF domains, AM1_6305g1 and AM1_1499g1, revealed that the second Cys is dispensable for isomerization activity, in which three residues participate by fixing the C- and D-rings. Fixation of the chromophore on both sides of the C5 bridge is necessary, even though one side of the fixation site is far from this bridge, with the other side at C31 fixed by the first Cys.
藻青菌视紫红质是由蓝藻产生的线性四吡咯结合光受体。它们的发色团结合 GAF 结构域分为许多谱系。其中,双 Cys 型藻青菌视紫红质 GAF 结构域不仅具有高度保守的“第一个 Cys”,而且还具有“第二个 Cys”,存在于多个谱系中。第一个 Cys 稳定地附着在 A 环的 C31 上,而第二个 Cys 主要可逆地连接到发色团的 C10。值得注意的是,第二个 Cys 在一级序列中的位置多样化,最丰富的双 Cys 型 GAF 结构域在 DXCF 基序内具有“第二个 Cys”,称为 DXCF GAF 结构域。长期以来,人们一直知道 DXCF GAF 结构域中的第二个 Cys 不仅具有可逆的连接作用,而且还参与异构化活性(从最初掺入的藻蓝胆素到藻红胆素的 C4=C5 双键减少)。然而,对 DXCF GAF 结构域 AM1_6305g1 和 AM1_1499g1 的全面定点突变揭示了第二个 Cys 对于异构化活性是可有可无的,其中三个残基通过固定 C 和 D 环来参与。即使固定位点的一侧远离该桥,另一侧通过第一个 Cys 固定在 C31 上,也需要固定在 C5 桥两侧的发色团。