Allosteric regulation in CRISPR/Cas1-Cas2 protospacer acquisition mediated by DNA in association with Cas2
Long, C.; Dai, L.; E, C.; Da, L.-T.; Yu, J.
Show abstract
Cas1 and Cas2 are highly conserved proteins across CRISPR-Cas systems and play a significant role in protospacer acquisition. Here we study the protospacer (or ps) DNA binding, recognition, and response to cleavage on the protospacer-adjacent-motif complementary sequence or PAMc by Cas1-Cas2, implementing all-atom molecular dynamics simulations. First, we noticed that two active sites of Cas1&1 bind asymmetrically to two identical PAMc in the simulation. For psDNA containing only one PAMc to be recognized, it is then found that the non-PAMc association site remains destabilized until after the bound PAMc being cleaved. Thus, correlation appears to exist between the two active sites, which can be allosterically mediated by psDNA and Cas2&2 in bridging. To substantiate such findings, we further simulated Cas1-Cas2 in complex with synthesized psDNA sequences psL and psH, which have been measured with low and high efficiency in acquisition, respectively. Notably, such inter-site correlation becomes largely enhanced for Cas1-Cas2 in complex with psH, and remains low with psL. Hence, our studies demonstrate that PAMc recognition and cleavage in one active site of Cas1-Cas2 allosterically regulates non-PAMc association/reaction in the other site, and such allosteric regulation is mediated by non-catalytic Cas 2 and DNA protospacer in acquisition.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Conformational transitions of the HIV-1 Gag polyprotein upon multimerization and gRNA binding 96%
- Protein target search diffusion-association/dissociation free energy landscape around DNA binding site with flanking sequences 96%
- Switching Promotor Recognition of Phage RNA Polymerase in Silico Following Path along Lab Directed Evolution 96%
Similar papers in this journal
- Ab initio predictions for 3D structure and stability of single- and double-stranded DNAs in ion solutions 97%
- Modeling of DNA binding to the condensin hinge domain using molecular dynamics simulations guided by atomic force microscopy 96%
- A structural dynamics model for how CPEB3 binding to SUMO2 can regulate translational control in dendritic spines 96%
Similar papers in this journal
- SMC complex unidirectionally translocates DNA by coupling segment capture with an asymmetric kleisin path 94%
- Deamidation disrupts native and transient contacts to weaken the interaction between UBC13 and RING-finger E3 ligases 94%
- Cooperation among c-subunits of FoF1-ATP synthase in rotation-coupled proton translocation 93%
Similar papers in this journal
- Histone Tail Electrostatics Modulate E2-E3 Enzyme Dynamics: A Gateway to Regulate Ubiquitination Machinery 96%
- Trapping non-cognate nucleotide upon initial binding for replication fidelity control in SARS-CoV-2 RNA dependent RNA polymerase 95%
- Probing Conformational Landscapes of Binding and Allostery in the SARS-CoV-2 Omicron Variant Complexes Using Microsecond Atomistic Simulations and Perturbation-Based Profiling Approaches: Hidden Role of Omicron Mutations as Modulators of Allosteric Signaling and Epistatic Relationships 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.