#microcephaly-associated
Microcephaly-associated protein WDR62 supports purine metabolism by interacting with co-chaperone BAG2
Dominic Ng and coworkers
link.springer.com/article/10.1...
Microcephaly-associated protein WDR62 supports purine metabolism by interacting with co-chaperone BAG2 - The EMBO Journal
Inherited mutations in the spindle pole-associated scaffold protein WDR62 cause autosomal recessive primary microcephaly. Previous research has characterised the roles of WDR62 in the regulation of sp...
link.springer.com
March 5, 2026 at 3:31 PM
"how federal and state public health officials determine measles deaths will only increase public confusion"

CDC 2026 measles-associated death is 6 week old Amish Lethal Microcephaly case
from Lancaster Co PA
not the Congenital measles case
Ivan Miller
www.statnews.com/2026/09/25/m...
RFK Jr.’s use of the National Center for Health Statistics will add confusion to measles deaths count
“A discrepancy between how federal and state public health officials determine measles deaths will only increase public confusion,” write Denys T. Lau and Jennifer D. Schoendorf.
www.statnews.com
September 28, 2026 at 2:25 PM
📣New from Bicknell & colleagues!
📄Recurrent de novo variants in the spliceosomal factor CRNKL1 are associated with severe microcephaly and pontocerebellar hypoplasia with seizures
Recurrent de novo variants in the spliceosomal factor CRNKL1 are associated with severe microcephaly and pontocerebellar hypoplasia with seizures
Recurrent de novo missense variants affecting CRNKL1, a component of the spliceosome, severely impact brain development, with a zebrafish model illustrating widespread cellular stress and apoptosis. T...
www.cell.com
June 20, 2025 at 6:23 PM
📣New from @marthabhattacharya.bsky.social & co!
📄Pathogenic variants in TMEM184B cause a neurodevelopmental syndrome associated with alteration of metabolic signaling
Pathogenic variants in TMEM184B cause a neurodevelopmental syndrome associated with alteration of metabolic signaling
De novo TMEM184B variants in six children are associated with neurodevelopmental deficits hallmarked by developmental delay, corpus callosum hypoplasia, seizures, and/or microcephaly. Studies in zebra...
www.cell.com
September 2, 2025 at 5:27 PM
Yes it has. And loss of one copy of DYRK1A (DYRK1A haploinsufficiency syndrome) is associated microcephaly and intellectual deficits. But despite their seq similarity DYRK1A and DYRK1B seem to have largely unique roles
May 1, 2026 at 11:58 AM
CPAP/CENPJ is essential for the stability and function of ESCRT-pathway associated AAA+ ATPase VPS4B www.biorxiv.org/content/10.6...
CPAP/CENPJ is essential for the stability and function of ESCRT-pathway associated AAA+ ATPase VPS4B
Function of CENPJ/CPAP is essential for centriole duplication and cilia biogenesis, disruption of which can lead to microcephaly and Seckel syndrome. Recently, we showed that CPAP is an integral Endos...
www.biorxiv.org
August 13, 2026 at 4:36 PM
A Pennsylvania baby w/ a rare disorder died of measles at ~6 wks of age, the coroner now says. This is 1 of 2 measles deaths the CDC director wouldn't list on an agency website. The 2nd baby's death was defined as measles-associated. Both deaths are the 1st measles-related deaths statewide in 35 yrs
6-week-old infant died of measles, Pennsylvania county coroner says | CNN
A girl born in Pennsylvania with a rare neurological disorder called Amish lethal microcephaly died of measles at around 6 weeks of age, the Lancaster County coroner said Friday.
www.cnn.com
September 5, 2026 at 5:47 PM
#eNeuro | Genetic Rescue of Pathogenic O-GlcNAc Dyshomeostasis Associated with Microcephaly and Motor Deficits
https://doi.org/10.1523/ENEURO.0453-25.2026
June 22, 2026 at 2:31 PM
Microcephaly-associated genes asp and Sas4 influence chromatin organization and nuclear lamina structure in Drosophila melanogaster
#Drosophila
Microcephaly-associated genes asp and Sas4 influence chromatin organization and nuclear lamina structure in Drosophila melanogaster #Drosophila
PubMed link
pubmed.ncbi.nlm.nih.gov
May 1, 2026 at 11:23 AM
Microcephaly-like phenotype triggered by novel reassortant and prototypic Oropouche Virus strains in brain organoids bioRxivpreprint
Microcephaly-like phenotype triggered by novel reassortant and prototypic Oropouche Virus strains in brain organoids
Oropouche virus (OROV) is an emerging arbovirus currently spreading across South America, with increasing reports of neurological manifestations, severe systemic disease, and congenital abnormalities. Although traditionally associated with mild febrile illness, the recent geographic expansion and surge in OROV outbreaks have prompted attention to its neurotropic potential. Here, we investigated the impact of OROV infection on human neural development using neural stem cells (NSCs) and brain organoids derived from induced pluripotent stem cells. Recent OROV isolates exhibiting genomic reassortment and associated with increased neurological manifestations were compared with a prototypical strain for the ability to infect NSCs, early-stage organoids, and more mature cortical-like tissues. OROV infected NSCs efficiently, leading to widespread cell death, depletion of proliferative progenitors, and disruption of neuroepithelial organization. Transcriptomic profiling of infected NSCs revealed a robust reduction of antiviral response genes and an enrichment of pathways related to viral replication, apoptosis, and the inhibition of stem cell maintenance and neuronal differentiation. These molecular signatures aligned with the phenotypic collapse of progenitor pools and cortical structure observed in organoids. OROV antigens were detected in both astrocytes and neurons, with associated structural degeneration. Although a substantial overlap in differentially expressed genes was observed between the two viral strains, some strain-specific transcriptional responses were detected. However, these modest differences did not translate into distinct cytopathogenic effects between the two viral strains. These phenotypes, including the reduced growth of infected organoids, resemble those previously described with Zika virus in the same cellular models, supporting the hypothesis that OROV may impair brain development. Together, these results reveal a previously unrecognized neuroteratogenic potential of OROV strains and provide mechanistic insight into the potential of OROV to induce microcephaly-like phenotypes, highlighting its relevance as a significant threat to maternal-fetal health.
dlvr.it
August 17, 2025 at 7:26 AM
RRIDs were included in this paper. Thanks for making your methods matter! #ReproducibleResearch #STMpublishing #reproducibility
The microcephaly-associated protein YIPF5 differentially regulates ER-export
Read the full paper: The microcephaly-associated protein YIPF5 differentially regulates ER-export
doi.org
February 5, 2026 at 10:24 PM
The condition is associated with developmental and neurologic challenges as the child grows. Five of 22 studies noted that over 50% of newborns had microcephaly, and the same number of studies observed that over 5% had CZS. In addition, 4 of 22 reported a miscarriage rate over 3%.
May 15, 2025 at 4:25 AM
📣New from McGivern et al.
📄Homozygous variants in EIF3K associated with neurodevelopmental delay, microcephaly, and growth retardation
👉https://bit.ly/43OSJut
April 11, 2025 at 1:54 PM
RRIDs were included in this paper. We value the author's support of reproducibility. #RRID #STMpublishing #STMpublishing
The microcephaly-associated protein YIPF5 differentially regulates ER-export
doi.org
February 1, 2026 at 8:03 AM
Microcephaly-like phenotype triggered by novel reassortant and prototypic Oropouche Virus strains in brain organoids bioRxivpreprint
Microcephaly-like phenotype triggered by novel reassortant and prototypic Oropouche Virus strains in brain organoids
Oropouche virus (OROV) is an emerging arbovirus currently spreading across South America, with increasing reports of neurological manifestations, severe systemic disease, and congenital abnormalities. Although traditionally associated with mild febrile illness, the recent geographic expansion and surge in OROV outbreaks have prompted attention to its neurotropic potential. Here, we investigated the impact of OROV infection on human neural development using neural stem cells (NSCs) and brain organoids derived from induced pluripotent stem cells. Recent OROV isolates exhibiting genomic reassortment and associated with increased neurological manifestations were compared with a prototypical strain for the ability to infect NSCs, early-stage organoids, and more mature cortical-like tissues. OROV infected NSCs efficiently, leading to widespread cell death, depletion of proliferative progenitors, and disruption of neuroepithelial organization. Transcriptomic profiling of infected NSCs revealed a robust reduction of antiviral response genes and an enrichment of pathways related to viral replication, apoptosis, and the inhibition of stem cell maintenance and neuronal differentiation. These molecular signatures aligned with the phenotypic collapse of progenitor pools and cortical structure observed in organoids. OROV antigens were detected in both astrocytes and neurons, with associated structural degeneration. Although a substantial overlap in differentially expressed genes was observed between the two viral strains, some strain-specific transcriptional responses were detected. However, these modest differences did not translate into distinct cytopathogenic effects between the two viral strains. These phenotypes, including the reduced growth of infected organoids, resemble those previously described with Zika virus in the same cellular models, supporting the hypothesis that OROV may impair brain development. Together, these results reveal a previously unrecognized neuroteratogenic potential of OROV strains and provide mechanistic insight into the potential of OROV to induce microcephaly-like phenotypes, highlighting its relevance as a significant threat to maternal-fetal health.
dlvr.it
August 16, 2025 at 12:25 AM
New paper: The neurodevelopmental spectrum of CASK-related disorder: doi.org/10.1186/s116...
The neurodevelopmental spectrum of CASK-related disorder - Journal of Neurodevelopmental Disorders
Background Pathogenic CASK variants are associated with neurodevelopmental disorders of variable severity including X-linked intellectual disability (XLID) and microcephaly with pontocerebellar hypoplasia (MICPCH). Although the number of diagnosed cases is rising, current understanding of the CASK-related neurodevelopmental spectrum is limited. Here, we systematically review the published characteristics of individuals with CASK-related disorder, and compare these to a more recently-diagnosed group. We provide quantitative information about the ranges of adaptive abilities, motor function, visual function and social-emotional-behavioural characteristics, and explore within-group associations. Methods One hundred and fifty-one individuals with CASK variants were identified in published literature. Thirty-one children and young people with CASK variants were recruited to the UK-based Brain and Behaviour in Neurodevelopmental disorders of Genetic Origin (BINGO) project. BINGO-participating caregivers completed a bespoke medical history questionnaire and battery of standardised neurodevelopmental measures. Results Comparing the recently diagnosed BINGO CASK-related disorder group to previously reported individuals, we found consistent prevalence of tone abnormalities, sensorineural hearing loss and epilepsy, but lower prevalence of severe/profound ID, MICPCH, optic atrophy and nystagmus. Areas of frequent difficulty not highlighted in previous reports include sleep difficulties and cerebral visual impairment (CVI). Neurodevelopmental characteristics were highly variable within the BINGO CASK-related disorder group, and group-wide patterns were similar to those observed in other rare genetic conditions. Within the BINGO CASK-related group, epilepsy is significantly associated with ID severity, after controlling for age. Sub-groups with MICPCH or microcephaly only have equivalent ranges of adaptive function, but MICPCH may be associated with more severe motor difficulties. Conclusion The spectrum of neurodevelopmental characteristics associated with CASK-related disorder appears to be broadening with increased access to genome-wide diagnostic testing. Further studies are needed to elucidate the relationships between CASK variants, structural brain development, epilepsy, and neurodevelopmental characteristics.
doi.org
October 10, 2025 at 8:22 AM
Yes, not good at all. When zika was associated with neuro-developmental issues (microcephaly), the world reacted. Now, this barely makes the news.
November 10, 2024 at 9:18 PM
Latest publication from Otago Biochemistry.
Recurrent de novo variants in the spliceosomal factor CRNKL1 are associated with severe microcephaly and pontocerebellar hypoplasia with seizures
www.sciencedirect.com/science/arti...
Recurrent de novo variants in the spliceosomal factor CRNKL1 are associated with severe microcephaly and pontocerebellar hypoplasia with seizures
Splicing is a complex process that is required to create the transcriptomic diversity needed for specialized functions in higher eukaryotes. The splic…
www.sciencedirect.com
September 1, 2025 at 10:26 PM
A preprint using: psPAX2 (RRID:Addgene_12260) from @addgene.bsky.social was published.

SciScore made a table with this resource, see “Automated Services” module (download as csv, xml or #jats) #reproducibility #methodsmatter
The microcephaly-associated protein YIPF5 differentially regulates ER-export
www.biorxiv.org
June 13, 2025 at 12:00 PM
SNW1 variants are associated microcephaly, but mechanism for reduced brain volume was unclear.

Ji et al. employ Drosophila and human cerebral organoid models, revealing how SNW1 mutations disrupt RNA splicing, alter neurodevelopmental genes, & reduce the NSC pool:
buff.ly/RGD6ufw
October 1, 2025 at 1:04 PM
RRIDs were included in this in EMBO Molecular Medicine paper. RRIDs improve reproducibility in scientific research. #accelerateopenscience #ReproducibleResearch #reproducibility
Distinct pathophysiological mechanisms of CEP152 variants in microcephaly and brain abnormalities - EMBO Molecular Medicine
CEP152 is essential for centriole function and neurodevelopment, and pathogenic recessive variants in CEP152 cause primary microcephaly. We identified new compound heterozygous CEP152 variants, c.314 G > A,p.(W105*) and c.2689 A > T,p.(K897*), in a microcephalic patient and analyzed them alongside a homozygous variant c.95 A > C,p.(Q32P) associated with severe microcephaly with marked gyral simplification. In vitro assays revealed distinct effects: p.K897* prevented centrosomal localization, p.W105* led to protein degradation, and p.Q32P retained centrosomal targeting but disrupted binding to Polo-like kinase 4, a key centriole biogenesis kinase and CEP152 partner. In vivo, both Cep152W105*/K897* and Cep152Q32P/Q32P knock-in mice displayed microcephaly; notably, Cep152Q32P/Q32P mice also exhibited severe cortical defects during brain development. Cellular analyses revealed centrosome dysfunction, mitotic errors, and increas
doi.org
June 19, 2026 at 7:01 AM
Bi-allelic variants in TM2D3 cause a severe syndromic neurodevelopmental disorder associated with endoplasmic reticulum and mitochondrial abnormalities
Bi-allelic variants in TM2D3 cause a severe syndromic neurodevelopmental disorder associated with endoplasmic reticulum and mitochondrial abnormalities - PubMed
We identified via exome sequencing bi-allelic variants in TM2D3 in four affected individuals from four unrelated families with overlapping clinical presentations, including microcephaly, severe global...
ift.tt
June 2, 2025 at 12:14 PM
RRIDs were included in this in The EMBO Journal paper. We value the author's support of reproducibility. #methodsmatter #BetterScience #OpenResearch
Microcephaly-associated protein WDR62 supports purine metabolism by interacting with co-chaperone BAG2 - The EMBO Journal
Inherited mutations in the spindle pole-associated scaffold protein WDR62 cause autosomal recessive primary microcephaly. Previous research has characterised the roles of WDR62 in the regulation of spindle dynamics, cell division, and brain development. Here, we identify a new function of this protein in regulating purine metabolism. WDR62 interacts directly with BAG2, a co-chaperone of HSP70/90. Under stress conditions, WDR62 and BAG2 re-localise to cytoplasmic granules enriched for enzymes involved in purine synthesis (PFAS) and salvage (HPRT). In WDR62-deficient cells, purine synthesis is impaired, while purine deprivation leads to cytotoxicity and nucleoside accumulation. Furthermore, in these cells elevated BAG2 levels are linked to HPRT destabilisation, which can be reversed by BAG2 knockdown. Notably, microcephaly-associated WDR62 mutations disrupt interaction with BAG2 and fail to restore HPRT levels. In utero depletion of WDR62 or HPRT in the mouse neocortex causes premature d
doi.org
April 9, 2026 at 7:01 AM
New insights into the mechanism of action of Dmrta2 in cortical development 🧠

Glad to have contributed to this study from the Bellefroid lab, now out in eNeuro 🔬

Congrats to the team! ✨

🔗 doi.org/10.1523/ENEU...

#Neuroscience #CortexDevelopment
@sfnjournals.bsky.social @ulbrecherche.bsky.social
Evidence That Dmrta2 Acts through Repression of Pax6 in Cortical Patterning and Identification of a Mutation Impairing DNA Recognition Associated with Microcephaly in Human
Dmrta2 (also designated Dmrt5) is a transcriptional regulator expressed in cortical progenitors in a caudomedialhigh/rostrolaterallow gradient with important roles at different steps of cortical devel...
doi.org
June 22, 2025 at 10:32 AM