Publications by authors named "Prajna Kulkarni"

Background: Small RNAs (sRNAs) constitute an important class of post-transcriptional regulators that control critical cellular processes in bacteria. Recent research using high-throughput transcriptomic approaches has led to a dramatic increase in the discovery of bacterial sRNAs. However, it is generally believed that the currently identified sRNAs constitute a limited subset of the bacterial sRNA repertoire.

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Article Synopsis
  • MicroRNAs (miRNAs) play a vital role in regulating cellular processes, including the tumor suppressor gene PTEN, with their activity influenced by competing endogenous RNAs (ceRNAs).
  • The study focuses on understanding the sequence features that allow transcripts to function as effective ceRNAs, using data from PAR-CLIP experiments and RNA-Seq to analyze how miRNAs interact with PTEN.
  • By identifying and validating potential ceRNAs like TNRC6B in prostate cancer cell lines, the researchers aim to build a predictive model for ceRNA networks, enhancing our understanding of cancer-related pathways.
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CsrA/RsmA homologs are an extensive family of ribonucleic acid (RNA)-binding proteins that function as global post-transcriptional regulators controlling important cellular processes such as secondary metabolism, motility, biofilm formation and the production and secretion of virulence factors in diverse bacterial species. While direct messenger RNA binding by CsrA/RsmA has been studied in detail for some genes, it is anticipated that there are numerous additional, as yet undiscovered, direct targets that mediate its global regulation. To assist in the discovery of these targets, we propose a sequence-based approach to predict genes directly regulated by these regulators.

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Recent work has uncovered a growing number of bacterial small RNAs (sRNAs), some of which have been shown to regulate critical cellular processes. Computational approaches, in combination with experiments, have played an important role in the discovery of these sRNAs. In this article, we first give an overview of different computational approaches for genome-wide prediction of sRNAs.

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The role of small RNAs as critical components of global regulatory networks has been highlighted by several recent studies. An important class of such small RNAs is represented by CsrB and CsrC of Escherichia coli, which control the activity of the global regulator CsrA. Given the critical role played by CsrA in several bacterial species, an important problem is the identification of CsrA-regulating small RNAs.

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