首页> 外文期刊>Plant and cell physiology >Brassica napus Drought–Induced 22-kD Protein (BnD22) Acts Simultaneously as a Cysteine Protease Inhibitor and Chlorophyll-Binding Protein
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Brassica napus Drought–Induced 22-kD Protein (BnD22) Acts Simultaneously as a Cysteine Protease Inhibitor and Chlorophyll-Binding Protein

机译:芸苔型油菜干旱诱导的 22-kD 蛋白 (BnD22) 同时作为半胱氨酸蛋白酶抑制剂和叶绿素结合蛋白发挥作用

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摘要

Abstract Class II water-soluble chlorophyll proteins (WSCPs) from Brassicaceae are non-photosynthetic proteins that bind with chlorophyll (Chl) and its derivatives. The physiological function of WSCPs is still unclear, but it is assumed to be involved in stress responses, which is likely related to their Chl-binding and protease inhibition (PI) activities. Yet, the dual function and simultaneous functionality of WSCPs must still be better understood. Here, the biochemical functions of Brassica napus drought–induced 22-kDa protein (BnD22), a major WSCP expressed in B. napus leaves, were investigated using recombinant hexahistidine-tagged protein. We showed that BnD22 inhibited cysteine proteases, such as papain, but not serine proteases. BnD22 was able to bind with Chla or Chlb to form tetrameric complexes. Unexpectedly, BnD22–Chl tetramer displays higher inhibition toward cysteine proteases, indicating (i) simultaneous Chl-binding and PI activities and (ii) Chl-dependent activation of PI activity of BnD22. Moreover, the photostability of BnD22–Chl tetramer was reduced upon binding with the protease. Using three-dimensional structural modeling and molecular docking, we revealed that Chl binding favors interaction between BnD22 and proteases. Despite its Chl-binding ability, the BnD22 was not detected in chloroplasts but rather in the endoplasmic reticulum and vacuole. In addition, the C-terminal extension peptide of BnD22, which cleaved off post-translationally in vivo, was not implicated in subcellular localization. Instead, it drastically promoted the expression, solubility and stability of the recombinant protein.
机译:摘要 十字花科II.类水溶性叶绿素蛋白(WSCP)是与叶绿素(Chl)及其衍生物结合的非光合蛋白。WSCP 的生理功能尚不清楚,但据推测它参与应激反应,这可能与其 Chl 结合和蛋白酶抑制 (PI) 活性有关。然而,WSCP的双重功能和同时功能仍然需要更好地理解。在这里,使用重组六组氨酸标记蛋白研究了甘蓝型油菜干旱诱导的 22-kDa 蛋白 (BnD22) 的生化功能,这是一种在型油菜叶中表达的主要 WSCP。我们发现 BnD22 抑制半胱氨酸蛋白酶,如木瓜蛋白酶,但不抑制丝氨酸蛋白酶。BnD22能够与Chla或Chlb结合形成四聚体复合物。出乎意料的是,BnD22-Chl 四聚体对半胱氨酸蛋白酶表现出更高的抑制作用,表明 (i) 同时具有 Chl 结合和 PI 活性,以及 (ii) BnD22 的 PI 活性的 Chl 依赖性激活。此外,BnD22–Chl 四聚体与蛋白酶结合后光稳定性降低。通过三维结构建模和分子对接,我们发现 Chl 结合有利于 BnD22 和蛋白酶之间的相互作用。尽管具有Chl结合能力,但BnD22并未在叶绿体中检测到,而是在内质网和液泡中检测到。此外,BnD22 的 C 端延伸肽在体内翻译后裂解,与亚细胞定位无关。相反,它极大地促进了重组蛋白的表达、溶解度和稳定性。

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