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Eva Bastida-Martínez

@eva-bastm.bsky.social
50 followers 102 following 2 posts

Researcher at LMU | @MicroClockERC.bsky.social Decoding the circadian clock of Bacillus subtilis Murcia 🍋 → Munich 🥨

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Reposted by Eva Bastida-Martínez
Nobel Prize @nobelprize.org · 11h
Peter Hegemann and Georg Nagel – awarded the 2026 medicine prize – discovered a remarkable protein, channelrhodopsin, in a single-celled alga. Hegemann wondered how Chlamydomonas, a single-celled alga, is able to swim towards a light source.
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Reposted by Eva Bastida-Martínez
Science Magazine @science.org · 01/10/2026
A new special issue of Science highlights the research that is seeking to close the critical gaps in women’s health. Learn more: scim.ag/4z7H8mG
Women make up more than half the population, but most of what we know about women’s biology comes from extrapolation of studies in men. This has been changing in recent years, and this special issue highlights some of the progress in understanding the biological basis of sex differences in health and disease and medical issues relevant to women’s health across different stages of life.

Illustration: Chiara Vercesi
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Reposted by Eva Bastida-Martínez
Antony Dodd @antdodd.bsky.social · 19/06/2026
Our new study finds that the Bacillus subtilis circadian clock regulates colony expansion and cell differentiation. Congrats to 1st authors Jack Dorling and Francesca Sartor, with @evolvedbiofilm.bsky.social and Martha Merrow @microclockerc.bsky.social #circadian www.nature.com/articles/s41...
nature.com
The Bacillus subtilis circadian clock coordinates intricate spatiotemporal organisation - Nature Communications
The potential functions of circadian clocks in non-photosynthetic bacteria are poorly understood. Here, the authors show that the Bacillus subtilis circadian clock regulates the spatiotemporal organis...
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Eva Bastida-Martínez @eva-bastm.bsky.social · 12/06/2026
First international conference as part of the @microclockerc.bsky.social project! Grateful for the opportunity to present our work at the Asian Forum of Chronobiology on the beautiful KAIST campus in Daejeon 🇰🇷 #AFC2026
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Reposted by Eva Bastida-Martínez
Iñaki Ruiz-Trillo @multicellgenome.bsky.social · 10/06/2026
1/7 We often picture eukaryogenesis as a symbiosis between two lineages: an archaeal host & the ancestor of mitochondria. But what if the origin of eukaryotes emerged within a much more complex microbial ecosystem? A fascinating study from @tonigabaldon.bsky.social et al. explores exactly this. 🧵
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Reposted by Eva Bastida-Martínez
Antonino Asaro @antonino-asaro.bsky.social · 07/05/2026
Very happy to share our work on Ether lipid remodeling and ferroptosis. This was a very fruitful collaboration with @harayamajrlab.bsky.social . Many thanks to @giodang.bsky.social for the support and guidance, and to Howard Riezman, where part of this story began. www.biorxiv.org/content/10.6...
biorxiv.org
Ether lipid remodeling during neuronal differentiation prevents ferroptosis
Ferroptosis is a form of cell death driven by iron-dependent lipid peroxidation, with specific lipid species playing key roles in modulating susceptibility. Among these, ether lipids have shown conflicting effects, being linked to both protection and sensitization. Here, we dissect the relationship between lipid structure and ferroptosis sensitivity and explain how ether lipids exert context-dependent effects. Ether lipids can promote ferroptosis through a metabolic bias towards the accumulation of polyunsaturated acyl chains and ethanolamine head groups, whereas this pro-ferroptotic tendency is counterbalanced by the anti-ferroptotic vinyl ether moiety introduced by plasmanylethanolamine desaturase 1. We show that this protective effect is critical for preventing ferroptosis in hiPSC-derived neurons, which accumulate otherwise pro-ferroptotic ether lipids during differentiation. This effect is not solely due to its antioxidant properties but also stems from the reprogramming of mitochondrial respiration. The lack of vinyl ether bonds leads to multiple mitochondrial defects, including increased mitochondrial reactive oxygen species (ROS), lower membrane potential, and abnormal cristae structures. These findings indicate that vinyl ether bonds in ether lipids offer dual ferroptosis resistance by scavenging ROS and minimizing its production at the mitochondrial level. The disruption of this system in Caenorhabditis elegans leads to iron-induced death and impaired motility. Thus, our study reveals ether lipid structural remodeling as a key regulator of ferroptosis sensitivity in neurons. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, AS 647/1-1 Agencia Estatal de Investigación, PID2023-146930NB-I00 Japan Science and Technology Agency, JPMJER2101, JPMJFR230H, JPMJND2305, 25H01425, 25H01426, JPMJAP2505 National Research Agency French government, ANR-25-CE44-1525 Agencia Estatal de Investigación (AEI)-Spain, PID2021-123336NB-C21, PID2024-158644NB-C21 Swiss National Science Foundation, 185898, 184949 CNRS/Inserm ATIP-Avenir, ANR-15-IDEX-01
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Reposted by Eva Bastida-Martínez
Sociedad Española de Bioquímica y Biología Molecular (SEBBM) @sebbm.bsky.social · 23/04/2026
"Un nuevo regulador de la respuesta al estrés por peróxido" Revista SEBBM 228 marzo 2026 por Eva Bastida-Martínez et al @MontserratElia1 👉 f.mtr.cool/hjyvhudlmu
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Reposted by Eva Bastida-Martínez
Irene del Rey Navalón @irenedelrey.bsky.social · 04/03/2026
¡Muchas gracias @sebbm.bsky.social por compartir nuestro trabajo sobre el descubrimiento de un nuevo regulador no canónico en la respuesta bacteriana a estrés por peróxido! sebbm.es/revista/inve... @eva-bastm.bsky.social @umu @mit.edu
sebbm.es
Un nuevo regulador de la respuesta al estrés por peróxido
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Reposted by Eva Bastida-Martínez
Instituto de Química Física Blas Cabrera (IQF-CSIC) @iqf-csic.bsky.social · 08/01/2026
#IQFPaper PexR is a noncanonical regulator of the peroxide stress response in bacteria. Published in @narjournal.bsky.social Collaboration with @um.es @mitchemistry.bsky.social @mitchemistry.bsky.social @hhmi-science.bsky.social bit.ly/4jww2AX
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Eva Bastida-Martínez @eva-bastm.bsky.social · 31/12/2025
Very happy to share that a central part of my PhD work at @um.es and @iqf-csic.bsky.social is now out in @narjournal.bsky.social. After a very intense and eventful year, this feels like a perfect way to close it 🎉 doi.org/10.1093/nar/...
doi.org
PexR is a noncanonical regulator of the peroxide stress response in bacteria
Abstract. Cells combat peroxide stress using peroxiredoxins and catalases. The paradigmatic H2O2-sensing OxyR or PerR transcription regulators typically co
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Reposted by Eva Bastida-Martínez
MicroClock ERCSyG @microclockerc.bsky.social · 20/11/2025
The MicroClock Team had the first retreat in Munich, discussing plans, experimental approaches, data analyses, and allowing trainees to get to know each other We are grateful to Luis Larrondo @lflarrondo.bsky.social for his recommendations about the MicroClock research plan during the retreat 🙏
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