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Song, J. J.

Publications and source records attributed to Song, J. J..

2 recordsLinked to original sources

Structures of pUG-fold RNA bound to DNMT1 reveal a mechanism for RNA-mediated epigenetic regulation

Many chromatin-associated proteins have been found to bind RNA as a means of epigenetic regulation. Specifically, DNA methyltransferase 1 (DNMT1), which maintains cytosine methylation at CpG dinucleotides, is inhibited by RNA at transcribed DNA loci in cells. However, the mechanisms by which RNA binds DNMT1 and inhibits its activity remain unknown. Here, we determine a series of cryogenic electron microscopy (cryo-EM) structures of human DNMT1 bound to pUG-fold RNA, a non-canonical G-quadruplex previously observed to inhibit activity, revealing two distinct RNA-binding modes. The pUG-fold RNA binds the surface of DNMT1 in its autoinhibited conformation across a positively charged surface between the methyltransferase domain and the CXXC domain, and it binds directly in the active site of an open DNMT1 conformation. RNA binding is sterically incompatible with substrate DNA engagement in both states. Our 2.5 [A] structure captures the intricate network of hydrogen bonds and electrostatic interactions between amino acids in the methyltransferase domain and the tetrad layers of pUG-fold RNA. Metadynamics molecular dynamics simulations provide an orthogonal view of the conformational landscape of DNMT1, revealing the two distinct RNA-binding modes. Furthermore, our analysis of published DNMT1 RIP-seq and eCLIP-seq data confirms that DNMT1-interacting RNAs in cells exhibit a strong propensity to form non-canonical G-quadruplex RNA structures. Collectively, our study provides the first structural basis for pUG-fold RNA recognition by a protein and illustrates how cryo-EM and AI-based methods for protein and RNA structure prediction synergize to inform the mechanism of RNA-mediated regulation of DNMT1.

biochemistry

Nano-particles constructed from Chaetomium cochliodes CTh05 against Magnaporthe oryzae causing rice blast

The effective isolate of Chaetomium sp actively against Magnaporthe sp causing rice blast were tested. Morphology and phylogenic identification was also confirmed Chaetomium.sp. Magnporthe sp proved to be virulent isolate to cause blast of rice. Bi-culture test proved that Chaetomium sp can be suppressed the growth of Magnaporthe sp. The fungal metabolites extracted from Chaetomium sp expressed antifungal Magnaporthe sp. Nano-particles derived from Chaetomium sp extracts exhibited significantly antifungal activity against Magnaporthe sp. Further investigation is to formulate the nanoparticles from active compounds of Chaetomium sp for plant immunity and to be applied in the rice fields.\n\nIMPORTANCERice blast is an economic important disease which caused by Magnaporthe. It causes yield loss and economic damage wherever rice is grown in Asia. It becomes the main disease due to wide distribution and most infection under favorable condition. The farmers have been applied several kinds of chemical fungicides that leading to the pathogen become resistant to those fungicides, and causes environmental pollution which the toxic chemicals residue in soil, water and surrounding environment. The significance of this research is to discover a new agricultural input as nanoparticles from Chaetomium to control the blast pathogen which will develop the nanoproduct to elicit immunity in rice, environmental protection and food safety.

microbiology