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Biology subjects

Snyder, E. M.

Publications and source records attributed to Snyder, E. M..

2 recordsLinked to original sources

ADAD2 regulates heterochromatin in meiotic and post-meiotic male germ cells via translation of MDC1

Male germ cells establish a unique heterochromatin domain, the XY-body, early in meiosis. How this domain is maintained through the end of meiosis and into post-meiotic germ cell differentiation is poorly understood. ADAD2 is a late meiotic male germ cell specific RNA binding protein, loss of which leads to post-meiotic germ cell defects. Analysis of ribosome association in Adad2 mutants revealed defective translation of Mdc1, a key regulator of XY-body formation, late in meiosis. As a result, Adad2 mutants show normal establishment but failed maintenance of the XY-body. XY-body defects are concurrent with abnormal autosomal heterochromatin and ultimately lead to severely perturbed post-meiotic germ cell heterochromatin and cell death. These findings highlight the requirement of ADAD2 for Mdc1 translation, the role of MDC1 in maintaining meiotic male germ cell heterochromatin, and the importance of late meiotic heterochromatin for normal post-meiotic germ cell differentiation. SummaryChukrallah et al. demonstrate ADAD2 is required for normal meiotic heterochromatin in male germ cells and loss leads to post-meiotic cell death defining ADAD2 as a heterochromatin maintenance factor.

cell biology↗

Multivalency enhances the specificity of Fc-cytokine fusions

The common {gamma}-chain receptor cytokines coordinate the proliferation and function of immune cell populations. One of these cytokines, interleukin (IL)-2, has potential as a therapy in autoimmune disease but is limited in effectiveness by its modest specificity toward regulatory T cells (Tregs). Engineering Treg-selective IL-2 has primarily focused on retaining binding to the high-affinity receptor, expressed more highly on Tregs, while reducing binding to the lower affinity receptor with broader expression. However, other parameters, such as the orientation and valency of Fc fusion, have signaling effects that have never been systematically explored. Here, we systematically profiled the signaling responses to a panel of wild type and mutein IL-2-Fc fusions across time, cell types, and concentrations. Exploring these responses, we found that dimeric muteins have unique specificity for Tregs through binding avidity. A mechanistic model of receptor interactions could capture these effects and directed the design of tetravalent IL-2-Fc fusions with greater Treg specificity than possible with current design strategies. Exploration of other surface targets on Tregs revealed that there are no other binding moieties that could be fused to IL-2 for greater selectivity. Instead, IL2R itself is a maximally unique surface target for Tregs, and so avidity is likely the only route to more selective Treg interaction. However, the binding model revealed that asymmetrical, multivalent IL-2 fusions can bias avidity effects toward IL2R for even further enhanced Treg selectivity. These findings present a comprehensive analysis of how ligand properties and their effects on surface receptor-ligand interactions translate to selective activation of immune cell populations, and consequently reveals two new routes toward therapeutic cytokines with superior Treg selectivity that can be exploited for designing selective therapies in many other contexts. Significance StatementSignaling in off-target immune cells has hindered the effectiveness of IL-2 as an immunotherapy. We show that IL-2-Fc fusions with higher valency can exhibit enhanced regulatory T cell selectivity. This altered selectivity is explained by the kinetics of surface receptor-ligand binding and can be quantitatively predicted using a multivalent binding model. Using these insights, we successfully develop two new strategies for IL-2 therapies with unprecedented selectivity. HighlightsO_LICurrent IL-2 therapies are limited by a selectivity/target potency tradeoff. C_LIO_LIMultivalency enhances selectivity for Tregs through IL2R avidity. C_LIO_LITreg selectivity cannot be enhanced by targeting other surface protein markers. C_LIO_LIMultivalency can decouple selectivity from signaling using asymmetric cytokine fusions. C_LI

immunology↗