National Research Centre on Plant Biotechnology, Indian Agricultural Research Institute, New Delhi, India.
PLoS One. 2012;7(8):e42578. doi: 10.1371/journal.pone.0042578. Epub 2012 Aug 15.
A meta-analysis was performed to understand the role of zinc finger domains in proteins of resistance (R) genes cloned from different crops. We analyzed protein sequences of seventy R genes of various crops in which twenty six proteins were found to have zinc finger domains along with nucleotide binding sites - leucine rice repeats (NBS-LRR) domains. We identified thirty four zinc finger domains in the R proteins of nine crops and were grouped into 19 types of zinc fingers. The size of individual zinc finger domain within the R genes varied from 11 to 84 amino acids, whereas the size of proteins containing these domains varied from 263 to 1305 amino acids. The biophysical analysis revealed that molecular weight of Pi54 zinc finger was lowest whereas the highest one was found in rice Pib zinc finger named as Transposes Transcription Factor (TTF). The instability (R(2) =0.95) and the aliphatic (R(2) =0.94) indices profile of zinc finger domains follows the polynomial distribution pattern. The pairwise identity analysis showed that the Lin11, Isl-1 & Mec-3 (LIM) zinc finger domain of rice blast resistance protein pi21 have 12.3% similarity with the nuclear transcription factor, X-box binding-like 1 (NFX) type zinc finger domain of Pi54 protein. For the first time, we reported that Pi54 (Pi-k(h)-Tetep), a rice blast resistance (R) protein have a small zinc finger domain of NFX type located on the C-terminal in between NBS and LRR domains of the R-protein. Compositional analysis depicted by the helical wheel diagram revealed the presence of a hydrophobic region within this domain which might help in exposing the LRR region for a possible R-Avr interaction. This domain is unique among all other cloned plant disease resistance genes and might play an important role in broad-spectrum nature of rice blast resistance gene Pi54.
进行了一项荟萃分析,以了解从不同作物克隆的抗性(R)基因中锌指结构域的作用。我们分析了七十种不同作物的 R 基因的蛋白质序列,其中二十六个蛋白质被发现具有锌指结构域以及核苷酸结合位点 - 亮氨酸重复(NBS-LRR)结构域。我们在九种作物的 R 蛋白中鉴定出三十四个锌指结构域,并将其分为 19 种锌指类型。R 基因中单个锌指结构域的大小从 11 到 84 个氨基酸不等,而包含这些结构域的蛋白质的大小从 263 到 1305 个氨基酸不等。生物物理分析表明,Pi54 锌指的分子量最低,而在水稻 Pib 锌指中发现的最高分子量锌指被命名为转座转录因子(TTF)。锌指结构域的不稳定性(R²=0.95)和脂肪族(R²=0.94)指数谱遵循多项式分布模式。成对同一性分析表明,水稻白叶枯病抗性蛋白 pi21 的 Lin11、Isl-1 和 Mec-3(LIM)锌指结构域与 Pi54 蛋白的核转录因子 X 框结合样 1(NFX)型锌指结构域具有 12.3%的相似性。我们首次报道,水稻白叶枯病抗性(R)蛋白 Pi54(Pi-k(h)-Tetep)在 R 蛋白的 NBS 和 LRR 结构域之间的 C 末端具有一个小的 NFX 型锌指结构域。螺旋轮图的组成分析表明,该结构域内存在一个疏水区,可能有助于暴露 LRR 区域,以便可能进行 R-Avr 相互作用。该结构域在所有其他克隆的植物抗病基因中是独特的,可能在水稻白叶枯病抗性基因 Pi54 的广谱性质中发挥重要作用。