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Biology subjects

Ebert, M. S.

Publications and source records attributed to Ebert, M. S..

2 recordsLinked to original sources

Ribosome Molecular Aging Shapes Translation Dynamics

Cellular homeostasis relies on continual renewal of cellular components, yet some complexes like ribosomes persist for long periods, raising the question of whether extended molecular age impacts functional fidelity. Here, we introduce a spatiotemporal mapping strategy to resolve biomolecular life stages, and show that intracellular ribosome aging alters translational dynamics at specific transcripts. Molecularly aged ribosomes exhibit impaired elongation at basic amino acid-rich sequences, leading to increased pausing, premature termination, and ribosome collisions. By profiling ribosomal RNA modifications, we find that molecular aging increases the collision propensity of specific ribosome subpopulations. Consistent with our findings, enrichment of aged ribosomes in cells amplifies molecular age-dependent translation defects. In vivo labeling of ribosomes in aged C. elegans demonstrates that molecularly aged ribosomes shape translational dynamics during organismal aging. These findings identify ribosome molecular age as a determinant of translational dynamics, and link molecular aging of a core gene-expression complex to organismal aging. HIGHLIGHTSO_LIA pulse-chase labeling strategy enables mapping subcellular demographics of macromolecular complexes in space and time. C_LIO_LIMolecular aging of ribosomes drives differential mRNA translation and shapes elongation dynamics. C_LIO_LIThe collision propensity of specific ribosome subpopulations increases with molecular age. C_LIO_LIOlder ribosomes shape translation dynamics during organismal aging. C_LI

cell biology↗

Evolutionary transitions from female to hermaphrodite reproduction remodel olfactory and mating-receptive behaviors

Male/hermaphrodite species have arisen multiple times from a male/female ancestral state in nematodes, providing a model to study behavioral adaptations to different reproductive strategies. Here we examined the mating behaviors of male/female (gonochoristic) Caenorhabditis species in comparison to male/hermaphrodite (androdiecious) close relatives. We find that females from two species in the Elegans group chemotax to volatile odor from males, a behavior described in only a few animal species. The females also display known mating-receptive behaviors such as sedation when male reproductive structures contact the vulva. Focusing on the male/female species C. nigoni, we show that female chemotaxis to males is limited to adult females approaching adult or near-adult males, and relies upon the AWA neuron-specific transcription factor ODR-7, as does male chemotaxis to female odor as previously shown in C. elegans. However, female receptivity during mating contact is odr-7-independent. All female behaviors are suppressed by mating, and all are absent in young hermaphrodites from the sister species C. briggsae. However, latent receptivity during mating contact can be uncovered in mutant or aged C. briggsae hermaphrodites that lack self-sperm. Young hermaphrodites from a second androdioecious species, C. tropicalis, are similarly unreceptive to males, but recover all female behaviors upon aging. These results reveal two mechanistically distinct components of the shift from female to hermaphrodite behavior: the loss of female-specific odr-7-dependent chemotaxis, and a sperm-dependent state of reduced receptivity to mating contact. The recovery of receptivity after sperm depletion has the potential to maximize hermaphrodite fitness across the lifespan. HighlightsO_LIFemale and hermaphrodite mating behaviors differ in closely related nematode species C_LIO_LIFemales are attracted to volatile male odors, but hermaphrodites are not C_LIO_LIThe same olfactory neuron pair drives female attraction to males and vice versa C_LIO_LILatent female mating behaviors are revealed in hermaphrodites that lack self-sperm C_LI

neuroscience↗