At the GRC Chemistry and Biology Tetrapyrroles and here we are! Angela Wilks and Julia Cricco
Iqbal Hamza
@iqbalhamzalab.bsky.social
To Heme We Bow! Research: anemia; heme & iron trafficking/metabolism; red cell development; parasite-host interactions; drug discovery. Professor: U Maryland; Founder & President: Rakta Therapeutics (website: hamza.umd.edu)
Red blood cells don't always make their own heme - under stress, they scavange it from neighbors. Our new paper in @ScienceMagazine reveals a cell-nonautonomous heme acquisition pathway essential for erythroid hemoglobinization. #heme #erythropoiesis #anemia www.science.org/doi/10.1126/...
A cell-nonautonomous heme acquisition pathway enables erythroid hemoglobinization under stress
Heme, an iron-containing cofactor, is synthesized in mitochondria by an eight-enzyme pathway. Although cells were thought to manage heme autonomously, more than 1000 proteins contribute to its product...
science.org
Attention scientists from all over the world🙃 44 new #HFSPResearchGrants. 116 New #HFSPAwardees! From studying sleep to exploring hidden underground ecosystems, #HFSP awardees are pushing the boundaries of life science in unexpected directions! 🧪 Meet the 2026 cohort → bit.ly/4uGmMQ3 #sts
Thrilled to share our HFSP grant "Revealing the Hidden World of Heme Proteins in True Colour" has been funded! An international collaboration with Jennifer Ogilvie (Canada), Michel Sliwa (France), & Philipp Kukura (UK) to develop label-free single-molecule imaging of heme transport and trafficking.
A cell-nonautonomous heme acquisition pathway enables erythroid hemoglobinization under stress https://www.biorxiv.org/content/10.64898/2026.02.10.705195v1
🧪Bacterial DL-peptidases are key in coordindated predetor defenses AND powerful tools for natural product structure elucidation! 🦠✂️ New JACS paper with @pstallforth.bsky.social @mlakemeyer.bsky.social @en-hxnu-enment.bsky.social & Hertweck labs @microverse.bsky.social pubs.acs.org/doi/10.1021/...
Microbial dl-Peptidases Enable Predator Defense and Facilitate Structure Elucidation of Complex Natural Products
Peptidases are indispensable tools in biotechnology and chemical biology. However, the enzyme repertoire for the selective hydrolysis of dl-amide bonds in peptides is small. Here, we describe novel dl...
pubs.acs.org
🧵 Thrilled to share our new work in @embojournal! Over a century after Metchnikoff recognized macrophages as central to organismal homeostasis, we reveal how they act as metabolic guardians through an unexpected mechanism. www.embopress.org/doi/full/10.... (1/9)
Homeostatic control of energy metabolism by monocyte-derived macrophages | The EMBO Journal
imageimageMacrophages play critical roles in the homeostatic control systems that maintain vital parameters within physiological ranges. This study characterizes how mouse monocyte-derived macrophages...
embopress.org
🧪How does an ABC transporter 'know' nucleotides & substrates bound to far apart binding sites? Using 1H15N, 19F NMR, HDX-MS, PET-FCS & activity assays with Neuweiler, Marcoux, Orelle & Jault labs, we found a communication hinge! 😍🥳 @microverse.bsky.social @lifeprofile.bsky.social rdcu.be/ePm4C
Bidirectional communication between nucleotide and substrate binding sites in a type IV multidrug ABC transporter
Nature Communications - The communication hinge, found in type IV ABC transporters, forms a bidirectional communication between ATP- and substrate-binding sites. This is an unexplored allosteric...
rdcu.be
The successful candidate will use a variety of model systems —including mouse, zebrafish, C. elegans, and yeast at the interface of genetics, cell biology, and biochemistry to tackle fundamental questions in nutrient deficiencies, anemia and genetics. (2/2)
The Hamza Lab is seeking a highly motivated senior scientist to join their research program at the University of Maryland in investigating the molecular and cellular mechanisms of heme/iron homeostasis and its impact on growth and development. Email me directly. (1/2)
🚨 Registration is OPEN & FREE for the 2025 Red Cell Club + East-West Iron Club Meeting! 📍 Oct 27–29, 2025, Baltimore 🩸 Cutting-edge science in erythropoiesis & iron metabolism 🧪 35 oral slots for junior investigators/trainees 📅 Abstract deadline: Sept 12, 2025 🔗 Register now: redironconf.org
Red Iron Conference
redironconf.org
A metabolite-based resistance mechanism against malaria | Science www.science.org/doi/10.1126/... @gimmfoundation.bsky.social
A metabolite-based resistance mechanism against malaria
Jaundice is a common presentation of Plasmodium falciparum malaria, which arises from the accumulation of circulating bilirubin. It is not understood whether it represents an adaptive or maladaptive r...
science.org
At #Bioiron impromptu dinner with 26 people at a wonder Persian Restaurant in Montreal with @hosseinardehali.bsky.social @suzcloo.bsky.social @manciaslab.bsky.social @ironresearchlab.bsky.social
Katherine Arnott presenting her @simonsfoundation.org #Pivot Fellowship work in my lab at the Flatiron Institute
We had an amazing time with the ABC family and already miss you all! Can’t wait to hear your exciting talks, have great discussions, and hit the slopes of the Alps again. #ABC2025 See you next time!🗻⛷️🚠🧬🧫🧪💙
An interesting discovery paper identifying >6000 zinc-binding proteins using a method called ZnCPT The human zinc-binding cysteine proteome: Cell www.cell.com/cell/fulltex...
The human zinc-binding cysteine proteome
A deep mapping of the human zinc-binding cysteine proteome (ZnCPT) defines thousands of zinc-binding protein cysteines across major domains of biology and discovers glutathione reductase as zinc-targe...
cell.com
Originating as the East Coast Iron Club (ECIC) in New York in 1975, the East-West Iron Club (EWIC) is an annual gathering deeply rooted in the exploration of iron biology and translational research and has now evolved into a nationally recognized event.
The Red Cell Club was created in 1958 to foster the exchange of published and unpublished data on all aspects of erythrocyte biology, from developmental erythropoiesis to diagnosing and treating inherited and acquired erythrocyte disorders (pubmed.ncbi.nlm.nih.gov/11358359/)
A brief history of the Red Cell Club - PubMed
A brief history of the Red Cell Club
pubmed.ncbi.nlm.nih.gov
I will host the 2025 combined meeting of the Red Cell Club and the East -West Iron Club at the University of Maryland School of Medicine, Baltimore,MD from October 27-29, 2025. Scientific Chairs: Patrick Gallagher, MD Nationwide Children's Hospital Francesca Vinchi, PhD New York Blood Center
What do we mean by "labile metal pools"? Their properties depend primarily on the identity of the cation (are are conserved across species). This review is part of a special issue dedicated to my post-doc mentor Chris Walsh. #MicroSky pubs.acs.org/doi/10.1021/...
Metals in Motion: Understanding Labile Metal Pools in Bacteria
Metal ions are essential for all life. In microbial cells, potassium (K+) is the most abundant cation and plays a key role in maintaining osmotic balance. Magnesium (Mg2+) is the dominant divalent cation and is required for nucleic acid structure and as an enzyme cofactor. Microbes typically require the transition metals manganese (Mn), iron (Fe), copper (Cu), and zinc (Zn), although the precise set of metal ions needed to sustain life is variable. Intracellular metal pools can be conceptualized as a chemically complex mixture of rapidly exchanging (labile) ions, complemented by those reservoirs that exchange slowly relative to cell metabolism (sequestered). Labile metal pools are buffered by transient interactions with anionic metabolites and macromolecules, with the ribosome playing a major role. Sequestered metal pools include many metalloproteins, cofactors, and storage depots, with some pools redeployed upon metal depletion. Here, I review the size, composition, and dynamics of intracellular metal pools and highlight the major gaps in understanding.
pubs.acs.org
As a Biochemist who does Genetics, I first came across this article in the early 2000s (review.ucsc.edu/spring04/bio...). A good laugh to start your new year courtesy of the Sullivan and Kellogg labs at UCSC, who debated the relative merits of genetics and biochemistry many decades ago. Enjoy!
Review, Spring 2004
A Tale of Two Retired Scientists and Some Rope
review.ucsc.edu
On the beautiful Appalachian Trail for an overnight hike with temps around 20F/-6C. Doesn't get any better.
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👋We’re thrilled to see our community growing! 🥳 Welcome to all new followers! Exciting news: REGISTRATIONS ARE NOW OPEN for #ABC2025! 📍 Innsbruck, Austria 🗓️ Feb 27–Mar 3, 2025 🔗 abc2025meeting.org 📌 Register by Jan 5, 2025. Don’t miss out and see you next year!
Very interesting paper, adding lysosomes as an organelle delivering iron to mitochondria to control ferroptosis! www.researchsquare.com/article/rs-5...
A Bdh2-driven Lysosome to Mitochondria Iron Trafficking Controls Ferroptosis in Melanoma
Iron sustains cancer cell phenotypic and metabolic plasticity, yet it also sensitizes the mesenchymal/drug-tolerant persister phenotype to ferroptosis. This posits that iron compartmentalization must ...
researchsquare.com