Univ Rennes 1, INRAE, Institut Agro, IGEPP - UMR 1349, 35653, Le Rheu, France.
Univ Rennes 1, INSERM, EHESP, Irset - UMR 1085, 35043, Rennes, France.
Plant Physiol Biochem. 2022 Jun 15;181:71-80. doi: 10.1016/j.plaphy.2022.03.023. Epub 2022 Mar 31.
The water-soluble chlorophyll-proteins (WSCP) of class II from Brassicaceae are non-photosynthetic proteins that bind chlorophylls (Chls) and chlorophyll derivatives. Their physiological roles, biochemical functions and mode of action are still unclear. It is assumed that the WSCPs have a protection function against Chl photodamage during stressful conditions. WSCPs are subdivided into class IIA and class IIB according to their apparent Chla/b binding ratio. Although their Chla/Chlb binding selectivity has been partly characterized, their Chl affinities are not yet precisely defined. For instance, WSCPs IIA do not show any Chl binding preference while WSCPs IIB have greater affinity to Chlb. In this study, we present a novel method for assessment of Chl binding to WSCPs based on the differences of Chl photobleaching rates in a large range of Chl/protein ratios. The protein we have chosen to study WSCP is BnD22, a WSCP IIA induced in the leaves of Brassica napus under water deficit. BnD22 formed oligomeric complexes upon binding to Chla and/or Chlb allowing a protective effect against photodamage. The binding constants indicate that BnD22 binds with high affinity the Chls and with a strong selectivity to Chla. Moreover, dependending of Chl/protein ratio upon reconstitution, two distinct binding events were detected resulting from difference of Chl stoichiometry inside oligomeric complexes.
类 II 十字花科水溶性叶绿素蛋白(WSCP)是结合叶绿素(Chls)和叶绿素衍生物的非光合蛋白。它们的生理作用、生化功能和作用模式尚不清楚。据推测,WSCPs 在胁迫条件下具有保护 Chl 免受光破坏的功能。根据其明显的 Chla/b 结合比,WSCPs 分为 IIA 类和 IIB 类。尽管它们对 Chla/Chlb 的结合选择性已部分得到表征,但它们对 Chl 的亲和力尚未精确定义。例如,WSCPs IIA 对 Chl 没有任何结合偏好,而 WSCPs IIB 对 Chlb 的亲和力更大。在这项研究中,我们提出了一种基于 Chl 光漂白率在大范围 Chl/蛋白比下的差异来评估 Chl 与 WSCP 结合的新方法。我们选择研究的 WSCP 是 BnD22,它是在油菜叶片缺水时诱导产生的 IIA 类 WSCP。BnD22 在与 Chla 和/或 Chlb 结合时形成寡聚复合物,从而起到对光损伤的保护作用。结合常数表明,BnD22 与 Chls 具有高亲和力,对 Chla 具有很强的选择性。此外,根据再结合时的 Chl/蛋白比,检测到两个不同的结合事件,这是由于寡聚复合物内部 Chl 化学计量的差异造成的。