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Biology subjects

Chan, A. S. L.

Publications and source records attributed to Chan, A. S. L..

2 recordsLinked to original sources

Developmental senescence profiling reveals Eda2r as a common mediator in the core senescence program

Cellular senescence is a distinct state of stable cell-cycle arrest coupled to a dynamic secretory phenotype. Although transient senescence contributes to embryonic development and regeneration, its relationship to the chronic forms associated with damage and aging is unclear. Here, we generated a p21-reporter mouse to isolate and transcriptionally profile senescent cells in Apical Ectodermal Ridge of the developing limb. Comparative analysis of these cells with diverse in vitro and in vivo senescence models revealed a conserved gene program encompassing canonical markers and regulators, with previously unassociated factors. Among these, ectodysplasin A2 receptor (Eda2r) emerged as a critical modulator required for senescence-associated transcriptional and functional features. Our findings define a shared molecular framework linking developmental and pathological senescence and identify conserved effectors such as Eda2r as potential targets for therapeutic modulation of senescent cell function.

cell biology↗

Autophagy maintains the homeostatic environment in the male reproductive accessory organs playing a key role in fertility

Autophagy has been implicated in male fertility but its specific role in the post-testicular organs remains unclear. Here, we investigate this in mice expressing a doxycycline-inducible RNAi against Atg5 (Atg5i). Systemic autophagy inhibition in Atg5i mice resulted in the morphological and functional abrogation of the male accessory sex organs, leading to male subfertility. However, the testis was largely protected, likely due to the limited permeability of doxycycline through the blood-testis barrier. Interestingly, restoration of autophagy by doxycycline withdrawal in Atg5i mice led to substantial recovery of the phenotype in the accessory organs. This model offers a unique opportunity to dissect the pre- and post-testicular roles of autophagy, highlighting the non-autonomous impact of autophagy on male fertility.

cell biology↗