bioRxiv Science⌕ Search

Biology subjects

Bhalla, H.

Publications and source records attributed to Bhalla, H..

2 recordsLinked to original sources

Structural Insights into Competitive Binding Dynamics between RALF23/33 and PCP-B in Brassicaceae Pollination

Ensuring successful fertilization, viable offspring production, genetic isolation, and maintaining species integrity is pivotal for the survival of flowering plants. Members of Brassicaceae employ a "gatekeeping mechanism" involving interaction between stigmatic membrane-bound Catharanthus roseus receptor-like kinase 1-like (CrRLK1L) receptor, FERONIA, GPI anchored protein LLG2 (LORELEI-LIKE GLYCOPHOSPHATIDYLINOSITOL-ANCHORED PROTEIN 2) and autocrine secreted RALF23/33 (Rapid alkalinization factor) peptide. This binding establishes a barrier for pollen hydration by inducing ROS (Reactive Oxygen Species). Conversely, in the presence of compatible pollen, paracrine-secreted cysteine-rich peptides such as PCP-B{gamma} compete with RALF23/33 for binding to the FERONIA-LLG2 complex, thus reducing ROS levels, ensuring successful pollen hydration and germination. Despite its crucial role, the structural basis of this competitive binding dynamics remains elusive owing to the lack of structural data and the inherent flexibility of these peptides. Using structural modeling, molecular docking, and simulations, this study reveals that PCP-B{gamma} binds to the same negatively charged pocket in the FERONIA-LLG2 complex as RALF23, displacing and interrupting the heterodimerized structure, thus reducing ROS levels to promote pollination. Our study unveils the experimental data-based predicted models, competitive binding dynamics, and mechanism behind this "gatekeeping mechanism," shedding light on the molecular mechanism underlying this pollen hydration barrier in Brassicaceae.

plant biology↗

Structural insights into the recognition of RALF peptides by FERONIA receptor kinase during Brassicaceae Pollination

Ensuring species integrity and successful reproduction is pivotal for the survival of angiosperms. Members of Brassicaceae family employ a "lock and key" mechanism involving stigmatic (sRALFs) and pollen RALFs (pRALFs) binding to FERONIA, a Catharanthus roseus receptor-like kinase 1-like (CrRLK1L) receptor, to establish a prezygotic hybridization barrier. In the absence of compatible pRALFs, sRALFs bind to FERONIA, inducing a lock state for pollen tube penetration. Conversely, compatible pRALFs act as a key, facilitating successful fertilization. Competing pRALFs reduce the sRALFs binding to FERONIA in a dose-dependent manner, enabling pollen tube penetration. Despite its crucial role in Brassicaceae hybridization, the structural basis of this binding remains elusive owing to the highly flexible nature of RALF peptides. Using advanced structural modeling techniques and flexible peptide molecular docking, this study reveals that pRALFs and sRALFs bind to negatively charged pockets in FERONIA with varying binding affinities. Our study unveils the structural basis of this binding, shedding light on the molecular mechanism underlying hybridization barriers in Brassicaceae.

plant biology↗