Department of Plant and Microbial Biology, University of California, CA 94720-3102, USA.
Planta. 2010 Oct;232(5):1061-74. doi: 10.1007/s00425-010-1236-4. Epub 2010 Aug 10.
Towards an understanding of the interacting nature of the CLAVATA (CLV) complex, we predicted the 3D structures of CLV3/ESR-related (CLE) peptides and the ectodomain of their potential receptor proteins/kinases, and docking models of these molecules. The results show that the ectodomain of CLV1 can form homodimers and that the 12-/13-amino-acid CLV3 peptide fits into the binding clefts of the CLV1 dimers. Our results also demonstrate that the receptor domain of CORYNE (CRN), a recently identified receptor-like kinase, binds tightly to the ectodomain of CLV2, and this likely leads to an increased possibility for docking with CLV1. Furthermore, our docking models reveal that two CRN-CLV2 ectodomain heterodimers are able to form a tetramer receptor complex. Peptides of CLV3, CLE14, CLE19, and CLE20 are also able to bind a potential CLV2-CRN heterodimer or heterotetramer complex. Using a cell-division reporter line, we found that synthetic 12-amino-acid CLE14 and CLE20 peptides inhibit, irreversibly, root growth by reducing cell division rates in the root apical meristem, resulting in a short-root phenotype. Intriguingly, we observed that exogenous application of cytokinin can partially rescue the short-root phenotype induced by over-expression of either CLE14 or CLE20 in planta. However, cytokinin treatment does not rescue the short-root phenotype caused by exogenous application of the synthetic CLE14/CLE20 peptides, suggesting a requirement for a condition provided only in living plants. These results therefore imply that the CLE14/CLE20 peptides may act through the CLV2-CRN receptor kinase, and that their availabilities and/or abundances may be affected by cytokinin activity in planta.
为了深入了解 CLAVATA(CLV)复合物的相互作用性质,我们预测了 CLV3/ESR 相关(CLE)肽和它们潜在受体蛋白/激酶的胞外结构域,以及这些分子的对接模型。结果表明,CLV1 的胞外结构域可以形成同源二聚体,并且 12-/13-氨基酸 CLV3 肽适合 CLV1 二聚体的结合裂缝。我们的结果还表明,最近鉴定的受体样激酶 CORYNE(CRN)的受体结构域与 CLV2 的胞外结构域紧密结合,这可能增加了与 CLV1 对接的可能性。此外,我们的对接模型表明,两个 CRN-CLV2 胞外结构域异二聚体能够形成四聚体受体复合物。CLV3、CLE14、CLE19 和 CLE20 的肽也能够与潜在的 CLV2-CRN 异二聚体或异四聚体复合物结合。使用细胞分裂报告系,我们发现合成的 12 氨基酸 CLE14 和 CLE20 肽通过降低根尖分生组织中的细胞分裂率不可逆地抑制根生长,导致短根表型。有趣的是,我们观察到细胞分裂素的外源应用可以部分挽救 CLE14 或 CLE20 过表达在体内诱导的短根表型。然而,细胞分裂素处理不能挽救由外源应用合成的 CLE14/CLE20 肽引起的短根表型,这表明在活植物中只需要提供一种条件。这些结果因此表明,CLE14/CLE20 肽可能通过 CLV2-CRN 受体激酶发挥作用,并且它们的可用性和/或丰度可能受细胞分裂素活性的影响。