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1.
ACS Cent Sci ; 9(6): 1111-1118, 2023 Jun 28.
Article in English | MEDLINE | ID: mdl-37396861

ABSTRACT

The identification of tumor-specific biomarkers is one of the bottlenecks in the development of cancer therapies. Previous work revealed altered surface levels of reduced/oxidized cysteines in many cancers due to overexpression of redox-controlling proteins such as protein disulfide isomerases on the cell surface. Alterations in surface thiols can promote cell adhesion and metastasis, making thiols attractive targets for treatment. Few tools are available to study surface thiols on cancer cells and exploit them for theranostics. Here, we describe a nanobody (CB2) that specifically recognizes B cell lymphoma and breast cancer in a thiol-dependent manner. CB2 binding strictly requires the presence of a nonconserved cysteine in the antigen-binding region and correlates with elevated surface levels of free thiols on B cell lymphoma compared to healthy lymphocytes. Nanobody CB2 can induce complement-dependent cytotoxicity against lymphoma cells when functionalized with synthetic rhamnose trimers. Lymphoma cells internalize CB2 via thiol-mediated endocytosis which can be exploited to deliver cytotoxic agents. CB2 internalization combined with functionalization forms the basis for a wide range of diagnostic and therapeutic applications, rendering thiol-reactive nanobodies promising tools for targeting cancer.

2.
Chem Sci ; 14(27): 7559-7563, 2023 Jul 12.
Article in English | MEDLINE | ID: mdl-37449061

ABSTRACT

Candida auris (C. auris) is an emerging multidrug-resistant fungal pathogen that represents a significant public health challenge as it can spread rapidly and result in high mortality rates. The mannans on the C. auris cell surface are potent immunogens and attractive targets for developing a glycoconjugate vaccine. We synthesized the oligosaccharides resembling cell surface mannans of C. auris and printed them onto microarray slides that were used to screen plasma from mice infected with C. auris. IgM antibodies in mouse plasma recognize the ß-1,2 linkage present in C. auris surface mannans. Disaccharide 19 emerged from glycan array screening as a lead for developing a vaccine against C. auris, as the majority of patient plasma samples showed antibodies against this glycan. The synthetic oligosaccharides can be used for the early detection of C. auris infections.

3.
J Am Chem Soc ; 144(40): 18429-18434, 2022 10 12.
Article in English | MEDLINE | ID: mdl-36173281

ABSTRACT

Stapling short peptides to lock specific conformations and thereby obtain superior pharmacological properties is well established. However, similar concepts have not been applied to oligosaccharides. Here, we describe the design, synthesis, and characterization of the first stapled oligosaccharides. Automated assembly of ß-(1,6)-glucans equipped with two alkenyl side chains was followed by on-resin Grubbs metathesis for efficient ring closure with a variety of cross-linkers of different sizes. Oligosaccharide stapling increases enzymatic stability and cell penetration, therefore opening new opportunities for the use of glycans in medicinal chemistry.


Subject(s)
Oligosaccharides , Peptides , Glucans/chemistry , Molecular Conformation , Oligosaccharides/chemistry , Peptides/chemistry , Polysaccharides
4.
Cancer Res ; 79(1): 99-113, 2019 01 01.
Article in English | MEDLINE | ID: mdl-30361254

ABSTRACT

The DNA-methylating drug temozolomide, which induces cell death through apoptosis, is used for the treatment of malignant glioma. Here, we investigate the mechanisms underlying the ability of temozolomide to induce senescence in glioblastoma cells. Temozolomide-induced senescence was triggered by the specific DNA lesion O6-methylguanine (O6MeG) and characterized by arrest of cells in the G2-M phase. Inhibitor experiments revealed that temozolomide-induced senescence was initiated by damage recognition through the MRN complex, activation of the ATR/CHK1 axis of the DNA damage response pathway, and mediated by degradation of CDC25c. Temozolomide-induced senescence required functional p53 and was dependent on sustained p21 induction. p53-deficient cells, not expressing p21, failed to induce senescence, but were still able to induce a G2-M arrest. p14 and p16, targets of p53, were silenced in our cell system and did not seem to play a role in temozolomide-induced senescence. In addition to p21, the NF-κB pathway was required for senescence, which was accompanied by induction of the senescence-associated secretory phenotype. Upon temozolomide exposure, we found a strong repression of the mismatch repair proteins MSH2, MSH6, and EXO1 as well as the homologous recombination protein RAD51, which was downregulated by disruption of the E2F1/DP1 complex. Repression of these repair factors was not observed in G2-M arrested p53-deficient cells and, therefore, it seems to represent a specific trait of temozolomide-induced senescence. SIGNIFICANCE: These findings reveal a mechanism by which the anticancer drug temozolomide induces senescence and downregulation of DNA repair pathways in glioma cells.


Subject(s)
Ataxia Telangiectasia Mutated Proteins/metabolism , Checkpoint Kinase 1/metabolism , Cyclin-Dependent Kinase Inhibitor p21/metabolism , DNA Repair Enzymes/antagonists & inhibitors , DNA Repair/drug effects , Glioblastoma/pathology , NF-kappa B/metabolism , Temozolomide/pharmacology , Animals , Antineoplastic Agents, Alkylating/pharmacology , Apoptosis , Ataxia Telangiectasia Mutated Proteins/genetics , Cell Cycle , Cell Proliferation , Cellular Senescence , Checkpoint Kinase 1/genetics , Cyclin-Dependent Kinase Inhibitor p21/genetics , DNA Methylation , DNA Repair Enzymes/genetics , DNA Repair Enzymes/metabolism , Female , Gene Expression Regulation, Neoplastic , Glioblastoma/drug therapy , Glioblastoma/genetics , Glioblastoma/metabolism , Humans , Mice , Mice, Inbred BALB C , Mice, Nude , NF-kappa B/genetics , Tumor Cells, Cultured , Xenograft Model Antitumor Assays
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