bioRxiv Science⌕ Search

bioRxiv · 10.64898/2026.09.23.753855

Isoleucine absence from adult human hemoglobin is mirrored in mosquito proteomes and limits malaria parasite growth

Abstract

Amino acid composition within a proteome is conventionally viewed as a property of individual protein function. However, specific nutrient scarcity has been shown to reshape which amino acids are encoded in the genome of microbes. Mosquitoes have fed on blood for 200 million years, relying on blood amino acids for reproduction. We wondered whether this ancient dependency has left an imprint on the mosquito proteome. Here we show a proteome-wide shift to lower isoleucine usage in blood-feeding mosquitoes, mirroring the known isoleucine deficiency of adult human hemoglobin. In comparing amino acid composition across the proteomes of blood-feeding and non-blood-feeding mosquitoes, we found that blood feeders show systematically lower isoleucine usage and that highly expressed gut enzymes that digest the blood meal are nearly isoleucine free. Analysis of 707 vertebrate genomes reveals that isoleucine deficiency in major hemoglobin subunits is shared among mammals. Specifically, all non-Malagasy primates, including humans, lack isoleucine in their adult hemoglobin subunits while retaining it in fetal and embryonic subunits. We find that two other major blood proteins, serum albumin and immunoglobulin G, also have reduced isoleucine levels (~1.4%) compared to the human proteome-wide average of 4.38%. Finally, we reasoned that this widespread isoleucine restriction could serve to defend adult red blood cells against isoleucine-dependent blood parasites that feed on them. We tested this hypothesis with the malaria parasite Plasmodium falciparum, which is known to arrest growth in adult red blood cells when extracellular isoleucine is withdrawn. We found that neonatal red blood cells purified from umbilical cord blood, which contain isoleucine-rich fetal hemoglobin, permit growth without extracellular isoleucine. This work demonstrates that nutritional scarcity is reflected in the genomes of animals, and that amino acid depletion of host protein sequences may serve a protective function against blood parasites.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Houri-Zeevi, L., Kampmann, M., Duraisingh, M. T., Vosshall, L. B.. 2026-09-24. Isoleucine absence from adult human hemoglobin is mirrored in mosquito proteomes and limits malaria parasite growth. https://doi.org/10.64898/2026.09.23.753855

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Structural variation in repeat elements is widespread in normal human tissues and in tumorigenesis

Somatic mosaicism contributes to genomic variation, yet postzygotic structural variants remain under-characterized. We performed long- and short-read WGS from multiple individuals (n=47 normal tissues; n=168 samples) and identified mosaic structural variants in all individuals and germ layers, impacting a median 285.2 kb/genome. Nearly half of breakpoints were independently validated, with tissue distributions reflecting both early and late developmental origins. Most mosaic variants were repeat-mediated and 8.3% overlapped functional elements, an enrichment compared to germline variants. To extend these analyses in samples where long-read sequencing is infeasible, we measured repeat alterations from short-read sequencing, recapitulating mosaic tissue-specific differences. We characterized tumor- and tissue- specific variation in repeats across 15 cancer types and found tumor-related repeat variation to be similar in scale to that of normal mosaic variation. Tracking repeat changes in cell-free DNA provided a noninvasive approach for tumor monitoring. Our analyses revealed widespread repeat-driven structural variation in health and disease.

genomics↗

RNA isoform-resolved multiplexed sequencing with bioorthogonal barcoding

RNA isoform dysregulation drives disease pathogenesis and is the target of FDA-approved splice-switching therapeutics. However, multiplexed sequencing methods discard splice junction information because only 3' termini are barcoded and counted. Here, we repurpose acylation and click chemistries to conjugate bioorthogonal barcodes (bobcodes) directly onto multiple internal positions along cellular RNAs. Bobcoded RNAs from multiple samples are pooled for multiplexed cDNA synthesis, during which reverse transcriptase switches from each RNA template onto its tethered bobcode with greater than 99% accuracy in species mixing experiments. Bobcode attachment intervals set cDNA insert sizes without a library fragmentation step, and priming with poly(dT) or random hexamers selects between 3'-end counting and full-length isoform capture. A bioorthogonal barcode-sequencing (BOB-seq v0.1) drug screen identifies transcriptome-wide on- and off-target RNA splicing effects and outperforms existing multiplexing RNA sequencing methods in workflow simplicity, sample-to-sample variability, and barcoding accuracy. Bobcodes add isoform resolution to scalable multiplexed RNA sequencing.

genomics↗

Structural polymorphism and population-variable coding capacity of HERV-K(HML-2) in human pangenomes

Approximately 8% of the human genome is derived from ancient retroviral infections. The most recently integrated of these endogenous retroviruses is the HERV-K(HML-2) clade, whose expression has been associated with cancer, amyotrophic lateral sclerosis, and embryogenesis. Studies of HERV expression, particularly HML-2, have relied predominantly on short-read sequencing. However, the high similarity among HML-2 proviruses prevents many short reads from being assigned uniquely to individual loci. We therefore compared haplotype-resolved long-read genome assemblies from 292 donors to resolve variation in proviral structure and coding capacity. Several loci previously thought to be fixed were structurally polymorphic. Tandem arrays occurred at 13 loci and contained up to six proviral copies in a single array. At 8q11.23, we identified a previously undescribed full-length provirus in one haplotype. All 583 other haplotypes carried a solo-LTR. We found that standard reference genomes failed to represent the coding capacity retained in many individuals, whose proviruses contained intact open reading frames despite disruptive mutations in the reference sequences. Short-read genotypes left 32.5% of the tested donor-variant pairs unresolved at sites associated with viral reading frames. These findings show why HML-2 expression must be interpreted in the context of the structural and coding alleles each individual carries.

genomics↗