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Sengupta, J.

Publications and source records attributed to Sengupta, J..

3 recordsLinked to original sources

Cryo-EM structures reveal dynamic interplay of nascent chain-processing factors on the ribosome

During protein biosynthesis in bacteria, one of the earliest phenomena that a nascent polypeptide chain experiences is the co-translational enzymatic processing. The event includes two enzymatic pathways, deformylation of the N-terminal methionine followed by methionine excision catalyzed by peptide deformylase (PDF) and methionine aminopeptidase (MetAP). The ribosome tunnel exit serves as the podium for recruiting proteins involved in maturation processes of the nascent chain. During the process, the emerging nascent protein likely remains shielded by the chaperone trigger factor (TF).\n\nHere, we present the first cryo-EM structures of E. coli ribosome in complex with the nascent chain processing proteins. The structures reveal overlapping binding sites for PDF and MetAP when they bind individually at the tunnel exit site, where proteins L22 and L32 are identified as primary anchoring sites for both proteins. Interestingly however, MetAP has a remarkable ability of repositioning itself to adjacent locations in the presence of PDF and TF at the tunnel exit. Thus, our results disclose an unexpected scanning mechanism that MetAP adopts for context-specific ribosome association.

biochemistry

Electron microscopy reveals unique nano forms of bacterial spores

Endospore formation under environmental stress conditions is a well-established phenomenon for members of bacterial phylum Firmicutes, among which the most well studied ones belong to genus Bacillus and Clostridium. So far, known sizes of the spores are all larger than 500 nm. Nano-forms of bacteria have been reported but the notion still remains controversial. In this study, we provide visual evidences of living nano-entities (named here as nano-spores) formed by a bacterial species Bacillus cereus under prolonged stress, which are capable of escaping though standard sterile filtration procedure. The existence of nano-forms of bacteria was initially identified in a yeast ribosome preparation. We further demonstrate the transformation of the nano-spores into mature cells upon nutrient supply. Our study not only demonstrates the ability of bacteria to get transformed into yet-unknown form in order to survive under harsh environment, but also brings to light the existence of the smallest possible form of life.

microbiology

Allosteric Activation of p300 Autoacetylation by the Tumor Suppressor p53

The transcriptional coactivator p300 is essential for p53 transactivation, although its precise mechanism remains unclear. We report that, p53 allosterically activates the acetyltransferase activity of p300 through the enhancement of p300 autoacetylation. Cryo-electron microscopy revealed that the domain organization of p300 is substantially altered upon binding of p53, suggesting that a structural switch may underpin the activation. Acetylated p300 accumulates near the transcription start sites accompanied by a similar enrichment of activating histone marks near those sites. Disruption of p53-p300 interaction by a site-directed peptide inhibitor abolished autoacetylated p300-mediated enhanced histone acetylation, suggesting a crucial role played by the allosteric activation in p53-mediated gene regulation. Gain-of-function mutant p53, known to impart aggressive proliferative properties in tumor cells, also activate p300 autoacetylation. The same peptide abolished many of the gain-of-functions of mutant p53 as well. We conclude that allosteric activation of p300 by p53 underpins gene regulation by p53. Reversal of gain-of-function properties of mutant p53 suggests that molecules targeting the p53-p300 interface may be good candidates for anti-tumor drugs.

molecular biology