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Your search keyword '"Shamoon Naseem"' showing total 19 results

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Start Over You searched for: Author "Shamoon Naseem" Remove constraint Author: "Shamoon Naseem" Topic candida albicans Remove constraint Topic: candida albicans
19 results on '"Shamoon Naseem"'

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1. Candida albicans rvs161Δ and rvs167Δ Endocytosis Mutants Are Defective in Invasion into the Oral Cavity

2. Phagocytes from Mice Lacking the Sts Phosphatases Have an Enhanced Antifungal Response to Candida albicans

3. Modulating Host Signaling Pathways to Promote Resistance to Infection by Candida albicans

4. N-Acetylglucosamine Regulates Morphogenesis and Virulence Pathways in Fungi

5. Candida albicans Agar Invasion Assays

6. Regulation of Hyphal Growth and N-Acetylglucosamine Catabolism by Two Transcription Factors in Candida albicans

7. N-Acetylglucosamine Regulates Morphogenesis and Virulence Pathways in Fungi

8. Candida albicans rvs161Δ and rvs167Δ Endocytosis Mutants Are Defective in Invasion into the Oral Cavity

9. cAMP-independent signal pathways stimulate hyphal morphogenesis inCandida albicans

10. The mitochondrial protein Mcu1 plays important roles in carbon source utilization, filamentation, and virulence in Candida albicans

11. Hyphal growth in Candida albicans does not require induction of hyphal-specific gene expression

12. Modulating Host Signaling Pathways to Promote Resistance to Infection by Candida albicans

13. An N-acetylglucosamine transporter required for arbuscular mycorrhizal symbioses in rice and maize

14. Novel roles for GlcNAc in cell signaling

15. Pathogenic Effects of IFIT2 and Interferon-β during Fatal Systemic Candida albicans Infection

16. Flavodoxin-Like Proteins Protect Candida albicans from Oxidative Stress and Promote Virulence

17. Protection from Systemic Candida albicans Infection by Inactivation of the Sts Phosphatases

18. N-acetylglucosamine (GlcNAc) Triggers a Rapid, Temperature-Responsive Morphogenetic Program in Thermally Dimorphic Fungi

19. N-acetylglucosamine (GlcNAc) induction of hyphal morphogenesis and transcriptional responses in Candida albicans are not dependent on its metabolism

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