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Luis Guerra

@luisguerra.bsky.social
138 followers 217 following 37 posts

Lecturer/Assistant Professor in Pharmacology. Interest: Neurobiology, the evolution of the nervous system, GPCR deorphanisation, non-bilaterians.

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Reposted by Luis Guerra
Gaspar Jekely @jekely.biologists.social.ap.brid.gy · 23/09/2026
In the Vatican, at the "Evolution and Development" meeting organised by the Pontifical Academy of Sciences, an academy founded in 1603 and joined by Galileo in 1610. www.pas.va/en/events/2026/evodevo.h… Meeting organised by Eddy De Robertis and […] [Original post on biologists.social]
Rome, picture of St Peter''s basilica at night
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Luis Alberto Bezares Calderón @lbezarescalderon.bsky.social · 16/08/2026
Our team is recruiting a PhD student to investigate the evolution of pressure sensation in Zooplankton! The project will use marine invertebrate larvae to explore the molecular, cellular, and neuronal mechanisms behind this fascinating sensory system. More details here: bit.ly/3TTeF4Q
bit.ly
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Pawel Burkhardt @pawelburkhardt.bsky.social · 04/08/2026
Our Dispatch "Evolution: Ancient monoamines in a neuron-less animal" out in @currentbiology.bsky.social. Monoamine signaling and behavioral responses in placozoans suggest this system predates bilaterians. authors.elsevier.com/a/1nYJl3QW8S... @annaferraioli.bsky.social @msarscentre.bsky.social
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Gaspar Jekely @jekely.biologists.social.ap.brid.gy · 30/07/2026
If you are interested in nervous system evolution you may want to read our review with Kei Jokura on nerve nets: "Revisiting nerve nets: functional organization and evolutionary implication" link.springer.com/article/10.1038/s… […] [Original post on biologists.social]
Figure showing different Erdős–Rényi-type random graphs with different preferential attachment, resulting in increasingly modular graphs. Images of Syncytial nerve net of the ctenophore Mnemiopsis, Schematic of an incision experiment carried out by Romanes on the scyphosoan medusa Aurelia,  Schematic of the localised spread of activity in a hydrozoan nerve net, where different non-overlapping nerve nets mediate distinct behaviours. The hydromedusa Aglantha digitale with its giant motor system shows a centralised arrangement.
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Luis Guerra @luisguerra.bsky.social · 06/07/2026
Prebilaterian Origin of Monoaminergic Signalling is out! This paper represents four years of work, not only mine, but friends and colleagues. I am particularly grateful to Tatiana Mayorova; without her help, this paper would not have been nearly as complete. www.sciencedirect.com/science/arti...
sciencedirect.com
Prebilaterian origin of monoaminergic signaling
Monoamines such as serotonin, dopamine, and tyramine regulate physiological and behavioral processes in bilaterian animals, but the evolutionary origi…
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Iñaki Ruiz-Trillo @multicellgenome.bsky.social · 23/06/2026
1/3 Cell adhesion is considered one of the foundations of animal #multicellularity. Yet whether #ctenophores possess a functional cadherin–catenin complex has remained surprisingly controversial. A new study revisits that question. 🧵 @ctenophoresrock.bsky.social
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University of Southampton @unisouthampton.bsky.social · 23/06/2026
Our researchers have been awarded over €9m for three major research projects – two into corals and one on historic maritime trade. Congratulations to Prof Gavin Foster, Prof Joerg Wiedenmann and Prof Craig Lambert on their prestigious ERC Advanced Grants! Read more: tr.ee/Pmc27i
A collage featuring the three academics who have been awarded ERC Advanced Grants: The first man is wearing a white lab coat, working at a computer in a laboratory with industrial equipment in the background. The second man is shown in a portrait with a plain white background, wearing a black shirt and smiling slightly. The third man is outdoors, wearing sunglasses and a blue shirt, with a marina and blue sky in the background.
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Luis Guerra @luisguerra.bsky.social · 20/06/2026
My collaborator in France, Luis Bezares, is recruiting for our HFSP project on the evolutionary origins of TRP channel-mediated sensation. Interested in sensory biology, behaviour, microscopy, live imaging and early animal evolution? Join the Plankton Senses team in Villefranche-sur-Mer.
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Reposted by Luis Guerra
Annika Barber @annikabarber.bsky.social · 19/06/2026
Genuinely fascinating topic. But all I could see was plankton from SpongeBob. 😂
static.klipy.com
Plankton from Spongebob Sitting
ALT: Plankton from Spongebob Sitting
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Luis Guerra @luisguerra.bsky.social · 28/05/2026
Position for Postdoctoral Researcher in Neuromodulation of Feeding in the laboratory of Dr Meet Zandawala. Great opportunity at KU Leuven university! www.kuleuven.be/personeel/jo...
kuleuven.be
Postdoctoral Researcher in Neuromodulation of Feeding
We are recruiting a postdoctoral scientist to join the recently opened Zandawala Lab at KU Leuven. The position is funded by an Odysseus grant from FWO (Research Foundation – Flanders). For more infor...
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Reposted by Luis Guerra
Vengamanaidu Modepalli @venky-vnm.bsky.social · 20/04/2026
Interested in miRNAs, early animal evolution, and RNA biology? We’re recruiting a BBSRC-funded Postdoctoral Research Associate @bristolbiosci.bsky.social #Postdoc #microRNA #RNAbiology Apply by 14 May 2026. 👉 www.bristol.ac.uk/jobs/find-in...
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Luis Guerra @luisguerra.bsky.social · 24/03/2026
Happy to announce that we received the HFSP to study the evolution of TRP channels! bit.ly/4uGmMQ3 This project is a collaboration between Luis Bezares from the @biodev-vlfr.bsky.social LBDV in Viellefranch and the University of Southampton. @unisouthampton.bsky.social
bit.ly
New Awards 2026 | Human Frontier Science Program
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Luis Guerra @luisguerra.bsky.social · 21/03/2026
New paper alert. journals.plos.org/ploscompbiol... Collaboration with the Yuste lab. Neuropeptidergic connectome in Hydra vulgaris. The experimental deorphanisation still pending...
journals.plos.org
Dense and distributed neuropeptide network in the nerve net of Hydra vulgaris
Author summary For more than a century, neuroscience has focused on connections between neurons via synapses as the main basis of brain function. In this study, we explore an additional and less under...
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Reposted by Luis Guerra
Human Frontier Science Program @hfspo.bsky.social · 20/03/2026
Attention scientists from all over the world🙃 The 2026 #HFSPResearchGrants are out! 🥳 117 scientists from 31 countries will pursue bold, interdisciplinary research, from #neuroscience to #ecology and beyond! 🧪 Are you one of the new #HFSPAwardees? 🔗https://bit.ly/4uGmMQ3 #sts #HFSP
New HFSP Awardees 2026
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Luis Guerra @luisguerra.bsky.social · 23/02/2026
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Reposted by Luis Guerra
Vengamanaidu Modepalli @venky-vnm.bsky.social · 23/02/2026
Postdoc Opening! 🚨 Thrilled to (belatedly!) share that I’ve received @hfspo.bsky.social grant in collaboration with @KatherinaPetrou "Plant-like solar tracking in a photosymbiotic animal." We are hiring a Postdoc to join the team @bristolbiosci.bsky.social! Apply👇 www.jobs.ac.uk/job/DQO766/r...
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Maurice Elphick @mauriceelphick.bsky.social · 18/02/2026
KISSPEPTIN FUNCTION REVEALED IN AN INVERTEBRATE - Congrats to @tabindaislam.bsky.social whose first PhD paper was published today in BMC Biology. Thank you to co-authors @luisguerra.bsky.social & Dean Semmens and to our funders - @leverhulme.ac.uk BBSRC & IsDB. link.springer.com/article/10.1...
link.springer.com
Evolution of neurohormone function revealed by actions of kisspeptin-type peptides in an echinoderm - BMC Biology
Background The neurohormone kisspeptin regulates reproductive maturation and function in mammals by stimulating hypothalamic production and release of gonadotropin-releasing hormone. However, little i...
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Luis Guerra @luisguerra.bsky.social · 16/09/2025
Also from the Senatore's lab. It was shown that the NALCN/Cch1 ‘channelosome’, a pore subunit with dedicated partners (FAM155/Mid1 ± UNC79/UNC80) 1/2 rupress.org/jgp/article/...
rupress.org
NALCN/Cch1 channelosome subunits originated in early eukaryotes | Journal of General Physiology | Rockefeller University Press
This work explores the evolutionary origins of the sodium leak channel NALCN and its ancillary subunits FAM155/Mid1, UNC79, and UNC80. We uncover ancient o
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Luis Guerra @luisguerra.bsky.social · 16/09/2025
The latest papers from the Senatore Lab are very interesting and I would recomend to read them to anyone interested in the evolution of the nervous system. First: www.nature.com/articles/s42...
nature.com
Evolution of iGluR ligand specificity, polyamine regulation, and ion selectivity inferred from a placozoan epsilon receptor - Communications Biology
The authors generated a species-guided phylogeny of eukaryotic iGluRs, alongside a focused analysis of iGluR homologues from the early-branching invertebrate phylum Placozoa.
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Luis Guerra @luisguerra.bsky.social · 24/06/2025
Tons of ctenos in this season!!!
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Arnau Sebé-Pedrós @arnausebe.bsky.social · 07/05/2025
Check out our latest work on the evolution of animal genome regulation out today in @nature.com. Nicely summarized below by @ianakim.bsky.social. www.nature.com/articles/s41... This is a major output from our ERC-StG project Evocellmap @erc.europa.eu at @crg.eu
nature.com
Chromatin loops are an ancestral hallmark of the animal regulatory genome - Nature
The physical organization of the genome in non-bilaterian animals and their closest unicellular relatives is characterized; comparative analysis shows chromatin looping is a conserved feature of ...
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Luis Guerra @luisguerra.bsky.social · 30/04/2025
This paper is the result of funding from the BBSRC that I received in 2022 for my independent research. Then, since 2023, I’ve led my own lab focused on receptor deorphanisation and evolution of the nervous system, If you're interested in large-scale GPCR testing or collaborations, get in touch!
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Luis Guerra @luisguerra.bsky.social · 28/04/2025
🧪🧪⚗️ In the most recent work of my laboratory, we demonstrate that placozoans can respond to endogenous monoamines. Here you can look at the effects of tyramine, which increases the speed of placozoans. Tryptamine and Phenethylamine also have effects. #Science #Placozoans #Monoamines
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Luis Guerra @luisguerra.bsky.social · 24/04/2025
Preprint alert!. In the most recent work of my laboratory, we demonstrate that placozoans are able to respond to monoamines, furthermore, we experimentally characterise the receptors responsible for these effects. #Science #Placozoans #Neurotransmitters #Monoamines www.biorxiv.org/content/10.1...
biorxiv.org
Functional and phylogenetic analysis of placozoan GPCRs reveal the prebilaterian origin of monoaminergic signalling.
Monoamines are biologically active compounds crucial for neurotransmission and various physiological processes. They include neurotransmitters like serotonin, dopamine, and melatonin, which regulate mood, movement, and sleep in humans. In ecdysozoans, monoamines such as tyramine are important for modulating locomotion, learning, and feeding. The monoaminergic signalling system has been considered a bilaterian innovation, with conflicting evidence supporting its existence in earlier branching, non-bilaterian animals. Here, we challenge the bilaterian origin hypothesis by combining large-scale receptor deorphanisation with phylogenetic analyses to identify monoamine receptors from the placozoan Trichoplax adhaerens. We demonstrate that these receptors are homologous to known bilaterian GPCRs, and behavioural assays demonstrate that monoamines like tyramine and tryptamine affect the speed of locomotion and body shape of this animal, respectively. These responses, together with the presence of biosynthetic enzymes for these molecules, reveal that monoaminergic signalling is both active and endogenous in placozoans. Our findings provide compelling evidence for a prebilaterian origin of monoaminergic systems, reshaping our understanding of early nervous system evolution. ### Competing Interest Statement The authors have declared no competing interest.
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Luis Guerra @luisguerra.bsky.social · 10/04/2025
New preprint from the Senatore lab! Ancestral origin of the NALCN/Cch1 channelosome! Happy to have contributed! www.biorxiv.org/content/10.1...
biorxiv.org
NALCN/Cch1 channelosome subunits originated in early eukaryotes and are fully conserved in animals, fungi, and apusomonads
The sodium leak channel NALCN, a key regulator of neuronal excitability, associates with three ancillary subunits that are critical for its function: an extracellular subunit called FAM155, and two cytoplasmic subunits called UNC79 and UNC80. Interestingly, NALCN and FAM155 have orthologous phylogenetic relationships with the fungal calcium channel Cch1 and its extracellular subunit Mid1, however, UNC79 and UNC80 have not been reported outside of animals. In this study, we leveraged expanded gene sequence data available for eukaryotes to re-examine the evolutionary origins of NALCN and Cch1 channel subunits. Our analysis corroborates the direct phylogenetic relationship between NALCN and Cch1 and identifies a larger clade of related channels in additional eukaryotic taxa. We also identify homologues of FAM155/Mid1 in Cryptista algae, and UNC79 and UNC80 homologues in numerous non-metazoan eukaryotes including basidiomycete and mucoromycete fungi, and the microbial eukaryotic taxa Apusomonadida, Malawimonadida, and Discoba. Furthermore, we find that most major animal lineages, except ctenophores, possess a full complement of NALCN subunits. Comparing structural predictions with the solved structure of the human NALCN complex supports orthologous relationships between metazoan and non-metazoan FAM155/Mid1, UNC79, and UNC80 homologues. Together, our analyses reveal unexpected diversity and ancient eukaryotic origins of NALCN/Cch1 channelosome subunits and raise interesting questions about the functional nature of this conserved channel complex within a broad, eukaryotic context. ### Competing Interest Statement The authors have declared no competing interest.
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Luis Guerra @luisguerra.bsky.social · 31/03/2025
A short paper from a collaboration between my lab and a Mexican lab was published this week! www.sciencedirect.com/science/arti...
sciencedirect.com
Global analysis of ligand-gated ion channel conservation across Platyhelminthes
Ligand-gated ion channels (LGICs) are critical for neurotransmission, mediating responses to neurotransmitters and hormones, and influencing diverse p…
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Luis Guerra @luisguerra.bsky.social · 06/01/2025
Does anyone in the UK have a plasmid containing mScarlet, mScarlet3, or mScarlet3-H? I need it for a plasmid I’m developing. Thanks!
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Tomàs Montserrat Ayuso @tmontsay.bsky.social · 03/12/2024
Not checking nuclear markers like MALAT1 or intronic reads in your scRNA-seq data?🚨 We show their power to flag low-quality cells—even in top public datasets. It’s time to prioritize better QC for cleaner, more reliable genomics research! Read more: bmcgenomics.biomedcentral.com/articles/10.... 1/8
bmcgenomics.biomedcentral.com
High content of nuclei-free low-quality cells in reference single-cell atlases: a call for more stringent quality control using nuclear fraction - BMC Genomics
The advent of droplet-based single-cell RNA-sequencing (scRNA-seq) has dramatically increased data throughput, enabling the release of a diverse array of tissue cell atlases to the public. However, we...
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Luis Guerra @luisguerra.bsky.social · 24/11/2024
I love it. Dr Gostling is the Goat!. hahaha www.tiktok.com/@unisouthamp...
tiktok.com
To celebrate the 165th birthday of ‘On The Origin of Species’, Dr Neil Gostling’s here with a Gen Z script to spill the tea on how Charles Darwin came to publish on the 24th November 1859 🙌 🎉 Ft. Dr N...
TikTok video by University of Southampton
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