Search bioRxiv⌕ Search

bioRxiv · 10.1101/2024.05.23.595502

Potential L-asparaginase producing E.coli sources among River water and cafeteria sewage: The case of Wabe River and Wolkite University students' cafeteria in Wolkite, Ethiopia.

Abstract

L-asparaginase is a promising enzyme for cancer treatment and is found in plants, animals and microbes. This enzyme is of great medical and industrial importance. It is used with inside the remedy of acute lymphoblastic leukemia and helps in reducing the acryl amide substances found in fried and baked foods. Its source varies from bacteria to yeast and fungi. This study aimed to screen the potential L-asparaginase producing E. coli isolates among river water and cafeteria sewage samples near the Gubryie area, SNNPR-Ethiopia. In this study, E. coli isolates were isolated from sewage from the Wabe River and Wolkite University student cafeteria. During the study, 14 isolates, 11 from cafeteria sewage and 3 from Wabe River, were confirmed to be E. coli using IMViC, TSI, SCA, and Gram tests. For the E. coli-positive samples, screening of L-asparaginase was performed using the phenol red indicator. The change in color from yellow to pink in M9 media due to the acidic environment created when L-asparagine was degraded to urea indicates the presence of L-asparginase in the potent E. coli cells. The production of L-asparaginase was carried out using submerged fermentation method. Mechanical cell disruption method, high speed centrifugation, was used to separate the secreted enzyme from cells. The potential of the E. coli cells to produce L-asparginase was also checked using a rapid plate assay method with the indicator dye phenol red. The zone of inhibition for the intracellular enzyme activity ranges from 16.5 mm up to 22.25 mm while that of extracellular enzyme ranged from 7.5 mm up to 9 mm. The commonly used software system is SPSS version 23. The PCR result depicted that the ansA gene presence was confirmed in 50% of the isolates. The result confirmed that the E.coli isolates from sewage showed better L-asparaginase production potency than the Wabe River isolates. This study indicated that E. coli strains are promising sources of L-Asparginase for food and pharmacological companies if the scale-up of this work has been completed in the future.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Tufa, K. F., Mosisa, S. B., Beriso, A. B., Tufa, A. F.. 2024-05-23. Potential L-asparaginase producing E.coli sources among River water and cafeteria sewage: The case of Wabe River and Wolkite University students' cafeteria in Wolkite, Ethiopia.. https://doi.org/10.1101/2024.05.23.595502

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Trans-branching of polyubiquitin chains orchestrates the DNA replication stress response

Polyubiquitin chain geometry dictates functional consequences of ubiquitylation. Although branched polyubiquitin chains are abundant in cells, little is known about their functions. Here we show that branching on the DNA replication factor PCNA, mediated by the ubiquitin-conjugating enzyme UBE2K and involving lysines 63 and 48 of ubiquitin, orchestrates the sequence of events in response to replication stress. By inducing VCP-dependent extraction of PCNA from chromatin, branching promotes re-priming of stalled forks and necessitates a BRCA1-dependent pathway of daughter-strand gap repair. Our study identifies hyper-accumulation of daughter-strand gaps as the mechanistic basis underlying the toxicity of inhibitors of the PCNA-specific isopeptidase, USP1, in BRCA1-deficient cells. Moreover, an unexpected preference of UBE2K to operate in trans suggests a general timing mechanism to organize hierarchies amongst ubiquitin signals.

molecular biology↗

Impaired proteostasis is an early feature of the diabetic heart in humans and mice

Diabetes and obesity increase cardiac lipid levels leading to cardiomyopathy and heart failure. We hypothesized that intermittent fasting would reduce cardiac lipid levels. Surprisingly, intermittent fasting increased myocardial triglyceride content, but rescued mortality and attenuated cardiomyopathy in mice overexpressing cardiomyocyte acyl-CoA synthetase 1 (MHC-ACSL1). Lipid overload caused cardiomyocyte accumulation of polyubiquitinated protein aggregates containing desmin, a scaffolding intermediate filament protein, which intermittent fasting prevented. Furthermore, intermittent fasting reversed elevated myocardial C16:0 ceramide content, and knockdown of ceramide synthase CerS5 and CerS6 reduced palmitate-induced protein aggregation, highlighting a role for C16:0 ceramides in this pathology. Conversely, impairing aggrephagy with cardiomyocyte-specific p62 ablation induced heart failure in mice fed a high-fat diet, with paradoxically reduced cardiac lipid content. Crucially, non-failing diabetic human hearts also exhibited protein aggregate pathology. Taken together, these results demonstrate that impaired proteostasis characterizes cardiomyopathy from cardiac lipid overload and identify a promising new therapeutic target for this condition.

molecular biology↗

Spatial profiling and neurovascular communication in the developing and adolescent cortex following prenatal alcohol exposure

Fetal alcohol spectrum disorders (FASD) constitute a wide range of developmental, cognitive, and behavioral impairments caused by prenatal alcohol exposure (PAE). Although neuronal and vascular consequences of PAE have been studied, how alcohol affects the cerebrovasculature within the framework of the neurovascular unit (NVU) across development remains poorly understood. At minimum, the NVU comprises neurons, astrocyte endfeet, and endothelial cells (ECs), which coordinate to maintain brain homeostasis. Here, we used the NanoString Digital Spatial Profiling platform to characterize spatial transcriptomic data from neurons, astrocytes, and ECs from PAE and saccharin (SAC) control cortices at embryonic day 18 (E18) and postnatal day 28 (P28). Differentially expressed genes were then used for Ingenuity Pathway Analysis (IPA) to identify altered biological pathways and perform comparison analyses across developmental time points, while CellChat was used to infer cell cell communication networks. We uncovered thousands of differentially expressed genes and numerous altered pathways and biological processes in PAE cortices across development. Both IPA and CellChat analyses implicated dysregulation of vascular and extracellular matrix (ECM) remodeling, cell adhesion, and neuroinflammatory signaling. CellChat further predicted the loss of several key bidirectional relationships and altered ligand-receptor interactions among neurovascular cell types at E18 and P28. Overall, these findings identify PAE associated alterations in neurovascular gene expression and intercellular signaling across development, providing potential mechanisms by which PAE may disrupt neurodevelopment.

molecular biology↗