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Katab, E.

Publications and source records attributed to Katab, E..

2 recordsLinked to original sources

Protein-structure-sensitive mid-infrared optoacoustic microscopy enables label-free assessment of drug therapy in myeloma cells

Conventional live-cell optical microscopy lacks sensitivity and specificity for label-free detection of intracellular protein-structure dynamics, such as conformational transition from -helix to {beta}-sheet. Detecting intermolecular {beta}-sheet formation, for instance, is important because it is a hallmark of misfolded proteins and aggresome formation--which are intrinsic indicators of cell apoptosis in myeloma therapy. Going beyond conventional optical microscopy, we introduce a single-cell imaging technology with label-free sensitivity to intracellular intermolecular {beta}-sheet formation in living cells. This unique ability was attained by exploiting the spectral specificity of the mid-infrared amide I region (1700 - 1600 cm-1) to protein structure and the positive-contrast nature of optoacoustic microscopy. By means of this technology, we were able to monitor the efficiency of proteasome inhibition in a myeloma cell line and--as a first demonstration towards clinical translation--in biopsied myeloma cells from patients. Achieving label-free monitoring of treatment at a single-cell level allows longitudinal assessment of response heterogeneity, which could provide crucial therapeutic information, such as patient-specific sensitivity to treatment, thus facilitating personalized medicine in myeloma therapy.

biophysics↗

NF-κB c-REL-OTUD4 axis regulates B-cell receptor in B-cell lymphoma

The B-cell receptor (BCR) is essential for B-cell development and a crucial clinical target in immuno-oncology. However, therapeutic success against the BCR and downstream signaling pathways is hampered by enhanced NF-{kappa}B activation as a resistance mechanism. Using a multiomic approach, we discover the c-REL proto-oncogenic subunit of the NF-{kappa}B family as a key transcription factor regulating BCR subunit levels in B-cell lymphoma. Subsequent ChIP- seq, cell biology experiments, and patient data analysis reveal that OTUD4 is a critical deubiquitinase for inhibiting proteasomal degradation of c-REL and for stabilizing a multi-loop positive feedback of NF-{kappa}B to the BCR pathway. Remarkably, OTUD4 downregulation destabilizes c-REL and BCR levels and inhibits cell growth of B cell lymphoma. Thus, we shed light on the malignant potential of c-REL abundance, identify a positive feedback from c-REL to upstream BCR and present OTUD4 as a vulnerability to synergistically target NF-{kappa}B and BCR pathways in B-cell lymphoid malignancies.

cancer biology↗