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Biology subjects

Hu, X.-T.

Publications and source records attributed to Hu, X.-T..

2 recordsLinked to original sources

Bivalent ligands as a new universal chemotype of BCL6 degrader by inducing aggregation

BCL6 naturally exists as a homodimer to exert its transcriptional repressive function. Previous studies shown that molecular glue BI3802 can induce BCL6 dimer polymerization and thus degradation by ubiquitin-proteasome system. In this study we proposed a new strategy to degrade BCL6 by its homo-bivalent ligands, which can be rationally designed by assemble two BCL6 BTB ligands via linker. These homo-bivalent degraders (HBiDs) can induce polymerization of BCL6 dimer through chain assembly and ultimately lead to its ubiquitination and degradation. Since HBiD does not require a fragment to interact with components of protein degradation system, it could exhibit better target selectivity than traditional protein degraders while avoid drug resistance caused by mutations in protein degradation components. Here we will provide the proof-of-concept evidences for HBiD as BCL6 degrader. Most HBiDs synthesized in this study could degrade BCL6 regardless of the chemotype of BCL6 ligands, with extraordinary target selectivity. The degradation of BCL6 depends on the aggregation of BCL6 dimer induced by HBiD and the recruitment of SIAH1, the natural E3 ligase of BCL6. As protein dimerization is a common phenomenon in cells, HBiD may provide us with a powerful strategy for designing protein degraders as drug candidates or molecular probes.

biochemistry↗

Maternal separation induces autism spectrum disorder in young rhesus monkeys

Autism spectrum disorder (ASD) is a class of severe neurodevelopmental disorders with a high incidence in young children, and its pathogenesis remains elusive. There is no effective treatment, and ASD children usually have a hard time in integrating into society and leading a normal life, which places a heavy burden on the families and society. Studies have shown that in addition to genetic factors, environmental factors are another important risk contributing to the pathogenesis of ASD. Early environmental adversity, which can lead to abnormal brain development and affect cognition and behavior, greatly increases the incidence of a variety of brain developmental diseases including ASD. However, studies on this aspect are inadequate at present, and no clear conclusions can be drawn. We explored whether early adversity could trigger ASD core clinical symptoms in macaques by modeling early adversity through maternal separation. In this study, we conducted a rigorous behavioral analysis of 12 male macaques (1.5-2 years old) that underwent maternal separation and 9 male normal macaques of the same age that had been mother raised, and found that maternal separation could induce a small number of the young individuals to develop three core symptoms of ASD, including social impairment, stereotyped behaviors, and restricted interest simultaneously. According to DSM-V and ASD clinical diagnostic criteria, these individuals should be ASD macaques for having all the three core ASD symptoms at the same time., For the first time, this study reveals that early environmental adversity can lead to ASD pathogenesis in monkeys, and provides a new approach for future ASD studies and modeling ASD monkeys.

neuroscience↗