Search bioRxiv⌕ Search

Biology subjects

Qurashi, A. A.

Publications and source records attributed to Qurashi, A. A..

2 recordsLinked to original sources

Aberrant expression of stress-related Hsrω-n lncRNA contributes to CGG repeat-mediated toxicity in a Drosophila model of FXTAS

Fragile X-associated tremor/ataxia syndrome (FXTAS) is an adult-onset neurodegenerative disease associated with carriers of premutation (PM) alleles of the fragile X messenger ribonucleoprotein 1 (FMR1) gene. Expanded CGG repeats in the PM alleles are sufficient to cause cellular stress and toxicity in animal and cellular models of FXTAS. Here, we show that in a Drosophila transgenic model of FXTAS, expanded CGG repeats result in the overexpression of heat shock RNA omega-nuclear (Hsr{omega}-n), a stress-related long non-coding RNA (lncRNA) that dominantly enhances expanded CGG-induced neurotoxicity, whereas its reduction suppresses CGG-induced neurotoxicity. Furthermore, overexpression of Hsr{omega}-n lncRNA concomitantly resulted in a significant enhancement in its association with Hrb87F, the fly ortholog of one of the previously identified CGG repeat RNA-binding proteins, hnRNP A2/B1, and with the imitation switch (ISWI) protein, a chromatin remodeling factor. We extended the findings of Hsr{omega}-n to show that the mammalian stress-related lncRNAs SatIII and Neat1 are elevated in cells expressing expanded CGG repeats. Together, these findings highlight the critical roles of stress-related lncRNAs in CGG repeat-mediated toxicity and support a model in which the total steady-state levels of stress-related lncRNAs increase in the presence of expanded CGG repeats as part of the normal regulatory response to combat stress. However, the effects of chronic expanded CGG repeat expression in post-mitotic neurons may result in altered distribution and/or sequestration of specific RNA-binding proteins or chromatin remodeling factors associated with stress-related lncRNAs. This could contribute to the altered cellular homeostasis and genomic instability associated with FXTAS. SignificanceIndividuals carrying the FMR1 allele with expanded CGG repeats (55-200) in the 5' untranslated region are predisposed to fragile X-associated tremor/ataxia syndrome (FXTAS), a late-onset neurodegenerative disorder. FXTAS demonstrates incomplete penetrance, suggesting the possible involvement of genetic modifiers in its pathogenesis. We used a transgenic Drosophila FXTAS model to conduct genetic, molecular, and biochemical analyses. Our findings revealed that the expression of expanded CGG repeats aberrantly activates stress-related Hsr{omega}-n lncRNA in Drosophila melanogaster. Overexpression of this lncRNA exacerbates CGG-mediated neurodegeneration, whereas its repression alleviates this effect. Extending these findings to mammalian systems, we observed the upregulation of SATIII and Neat I, functional homologs of Hsr{omega}-n lncRNA, in cells expressing expanded CGG repeats. Collectively, these findings identify stress-related lncRNAs as key mediators of CGG-mediated toxicity and underscore their potential as therapeutic targets for FXTAS.

genetics↗

Comparison of co-immunoprecipitation techniques for effective identification of SNTA1 interacting proteins in breast cancer cells

Diverse signal transduction pathways involve thousands of proteins acting in concert that contribute to breast cancer pathology. SNTA1 has emerged as a common link that functions to wire various complex signaling circuits within the cell. In our study we used endogenous SNTA1 protein as bait in pull-down assays to identify SNTA1 interactome from breast cancer cell extract. We compared the utility of two co-immunoprecipitation techniques conventional co-IP and cross-linking co-IP coupled to mass spectrometry (IP-MS) that intriguingly generated valuable inventory of SNTA1 associated proteins in breast cancer cells that may or may not interact physically but contribute to shared functions in breast cancer pathology. We observed that Pierce cross-link IP kit enhanced sensivity of the analysis as it decreased the number of background proteins with a remarkable increase in identified list of proteins. We have also observed that different approaches are able to consistently detect the same signaling outcome as observed by Gene Ontology. Identification of interacting partners of SNTA1 in breast cancer cell lines may depict the possible signaling mechanism of this protein in molecular pathogenesis of breast cancer and its possible use as a therapeutic target.

cancer biology↗