Fusion protein corresponding to residues near the C terminal of human cerebellar degeneration-related protein 2, 62kDa
Conjugate
Unconjugated
Applications
Application Notes
IHC: 1:50-1:200
General Notes
This product (Catalog No. DPABH-14502) is a rabbit-derived IgG polyclonal antibody raised against human CDR2. It has been affinity purified by protein A. Cerebellar Degeneration-Related Protein 2 (CDR2) is an onconeural antigen primarily known as a key target of the immune response in paraneoplastic cerebellar degeneration (PCD), particularly associated with anti-Yo-positive ovarian and breast cancers. It acts as a regulatory protein in tumor cells, where it is involved in mitosis control and cell proliferation. DPABH-14502 is suitable for use in IHC (1:50–1:200) application. DPABH-14502 is supplied as a liquid formulation in pH7.4 PBS, 0.05% sodium azide, 40% Glycerol. For long-term storage, keep at −20 °C. For short-term use, store at 2–8 °C. Avoid repeated freeze–thaw cycles to maintain antibody integrity and performance.
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How do cells sense their own size and shape? And how does this information regulate progression of the cell cycle? Our group,(1) in parallel to that of Paul Nurse,(2) have recently demonstrated that fission yeast cells use a novel geometry-sensing mechanism to couple cell length perception with entry into mitosis. These rod-shaped cells measure their own length by using a medially-placed sensor, Cdr2, that reads a protein gradient emanating from cell tips, Pom1, to control entry into mitosis. Budding yeast cells use a similar molecular sensor to delay entry into mitosis in response to defects in bud morphogenesis. Metazoan cells also modulate cell proliferation in response to their own shape by sensing tension. Here I discuss the recent results obtained for the fission yeast system and compare them to the strategies used by these other organisms to perceive their own morphology.
Anticandidal properties of N-acylpeptides containing an inhibitor of glucosamine-6-phosphate synthase
JOURNAL OF ENZYME INHIBITION AND MEDICINAL CHEMISTRY
Authors: Andruszkiewicz, R; Zieniawa, T; Walkowiak, A
A series of N-acyl peptides 1 - 9, containing an inhibitor of glucosamine-6-phosphate synthase have been synthesised and tested against Candida strains. N-Acylated peptides inhibit glucosamine-6-phosphate synthase in cell free extracts from Candida albicans. Antifungal activities of the tested compounds correlated with their lipophilic properties. Peptides acylated with decanoic acid were found to be the most potent in the series. N-decanoylpeptides also showed activity against Candida albicans Gu5 resistant mutant with Cdr1 and Cdr2 drug extrusion proteins that causes MDR by an active efflux mechanism.