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Ahmed, S. B.

Publications and source records attributed to Ahmed, S. B..

2 recordsLinked to original sources

Nischarin negatively impacts ShcD-mediated tumor cell migration

ShcD was previously found to promote cell motility in melanoma cells. Screening of a yeast two hybrid mouse embryo cDNA library identified Nischarin, a negative regulator to cell motility, as an interacting partner to the ShcD-CH2 domain. Therefore, we aimed to investigate the interaction between Nischarin and ShcD in mammalian cells and to determine their functional impact on cell migration. The Nischarin/ShcD interaction was confirmed by transfection and co-immunoprecipitation assays using full-length constructs in HEK293, MCF7 and MM253 cell lines. Deletion of the first 93 amino acids of ShcD abrogated the interaction indicating the importance of these residues for Nischarin binding. Co-expression of Nischarin and ShcD demonstrated an inhibitory effect on the levels of phospho-ERK and phospho-LIMK. In support of this, Nischarin was found to block the migratory activities of ShcD. A brief in silico analysis of publicly available breast cancer patient data was performed to elucidate the effect of Nischarin/ShcD co-expression on the patients overall survival. Patients with high expression of both proteins had better survival than those with only ShcD overexpression. Our results reveal that the novel protein Nischarin is an interacting partner to ShcD. In addition, we report that the tumour suppressive abilities of Nischarin can overcome ShcD-mediated cell migration when both proteins are concomitantly expressed. *This abstract was presented in the National Cancer Research Institute (NCRI)-2019

molecular biology↗

Alleviation of salt stress in winter wheat by Pantoea spp. endophytes isolated from spontaneous desert plants of the Sahara

To develop bio-fertilizers for salt stress mitigation in winter wheat, 5 Pantoea spp. strains isolated from spontaneous plants of the Algerian Sahara were selected and identified based on the 16S rRNA gene, and distinguished at "strain" level by the IGS sequences. A plant test (greenhouse condition, non-sterile substrate) showed their effectiveness in promoting the growth of winter wheat cv. Gold Korn, under normal and saline conditions. An improvement of shoot length (no stress: up to +37.34% for Pantoea sp. BS27; salt stress at 200 mM: up to +32.95% for Pantoea sp. BS27) and dry weight (no stress: up to +23.89% for Pantoea sp. OT18; salt stress at 100 mM: up to +56.42 % for Pantoea sp. ME3; salt stress at 200 mM: up to 39.18% for Pantoea sp. OT18) was recorded. We suggest the Pantoea spp. strains ME3, OT37, and OT18 as promising inocula for yield improvement in salt-impacted soils.

microbiology↗