FB2026_03 , released September 17, 2026
Human Disease Model Report: Hengel-Maroofian-Schols syndrome
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General Information
Name
Hengel-Maroofian-Schols syndrome
FlyBase ID
FBhh0001362
Disease Ontology Term
Parent Disease
Overview

This report describes Hengel-Maroofian-Schols syndrome (HEMARS), a newly characterized syndromic neurodevelopmental disorder associated with the human BCAS3 gene; HEMARS exhibits autosomal recessive inheritance. BCAS3 encodes a large, highly conserved cytoskeletal protein with multiple inferred functions. There is a single orthologous gene in Drosophila, rudhira, for which multiple genetic reagents are available, including overexpression and RNAi targeting constructs, and alleles caused by insertional mutagenesis.

The human BCAS3 gene has not been introduced into flies.

Animals in which RNAi against rudhira in driven by an early-acting pan-neuronal driver die during the embryonic or larval/pupal stages (depending upon the strength of the RNAi reagent). Use of a motor-neuron specific driver results in lethality at larval/pupal stages. Using a later-acting pan-neuronal driver allows survival to adulthood; phenotypes observed include reduced longevity, severe locomotion defects and a wing phenotype.

[updated Jan. 2022 by FlyBase; FBrf0222196]

Disease Summary Information
Disease Summary: Hengel-Maroofian-Schols syndrome
OMIM report

[HENGEL-MAROOFIAN-SCHOLS SYNDROME; HEMARS](https://omim.org/entry/619641)

Human gene(s) implicated

[BCAS3 MICROTUBULE-ASSOCIATED CELL MIGRATION FACTOR; BCAS3](https://omim.org/entry/607470)

Symptoms and phenotype

This disease is characterized by global developmental delay accompanied by pyramidal tract involvement, microcephaly, short stature, strabismus, dysmorphic facial features, and seizures (Hengel et al., 2021: pubmed:34022130; FBrf0249195).

Hengel-Maroofian-Schols syndrome (HEMARS) is an autosomal recessive neurodevelopmental disorder characterized by severe global developmental delay apparent from infancy or early childhood. Affected individuals have delayed walking or inability to walk, impaired intellectual development with poor or absent speech, pyramidal signs manifest as lower limb spasticity, poor overall growth often with short stature and microcephaly, and dysmorphic facial features. Some patients develop seizures. Brain imaging shows thinning of the posterior part of the corpus callosum, delayed myelination, and cerebral and cerebellar atrophy (Hengel et al., 2021; pubmed:34022130). [from MIM:619641; 2022.01.09]

Genetics

In a study of 15 individuals from 8 unrelated families, germline bi-allelic loss-of-function variants of BCAS3 were observed to be associated with the disease (Hengel et al., 2021: pubmed:34022130; FBrf0249195).

Hengel-Maroofian-Schols syndrome (HEMARS) is caused by homozygous or compound heterozygous mutation in the BCAS3 gene. [from MIM:619641; 2022.01.09]

Cellular phenotype and pathology
Molecular information

BCAS3 microtubule-associated cell migration factor (BCAS3) is a large, highly conserved cytoskeletal protein proposed to be critical in angiogenesis and implicated in human embryogenesis and tumorigenesis; recent work suggests a critical role in neural tissue development (Hengel et al., 2021: pubmed:34022130; FBrf0249195).

The BCAS3 protein participates in the regulation of cell polarity and directional endothelial cell migration by mediating both the activation and recruitment of CDC42 and the reorganization of the actin cytoskeleton at the cell leading edge; has also been shown to stimulate histone acetyltransferase activity and to bind to chromatin. [Gene Cards, BCAS3; 2021.06.14]

External links
Disease synonyms
HEMARS
neurodevelopmental disorder, syndromic, BCAS3-related
Ortholog Information
Human gene(s) in FlyBase
    Human gene (HGNC)
    D. melanogaster ortholog (based on DIOPT)
    Comments on ortholog(s)

    One to one: 1 human gene to 1 Drosophila gene.

    Other mammalian ortholog(s) used
      D. melanogaster Gene Information (1)
      Gene Snapshot
      rudhira (rudhira) is expressed in nephrocytes and encodes a protein that regulates macromolecular uptake and clearance by nephrocytes to maintain tissue homeostasis. [Date last reviewed: 2019-09-26]
      Molecular function (GO)
      Gene Groups / Pathways
        Comments on ortholog(s)

        High-scoring ortholog of human BCAS3 (1 Drosophila to 1 human). Dmel\rudhira shares 32% identity and 44% similarity with the human gene.

        Orthologs and Alignments from DRSC
        DIOPT - DRSC Integrative Ortholog Prediction Tool - Click the link below to search for orthologs in Humans
        Other Genes Used: Viral, Bacterial, Synthetic (0)
          Summary of Physical Interactions (1 groups)
          RNA-protein
          Interacting group
          Assay
          References
          anti tag coimmunoprecipitation, full identification by RNA sequencing
          Alleles Reported to Model Human Disease (Disease Ontology) (2 alleles)
          Models Based on Experimental Evidence ( 2 )
          Modifiers Based on Experimental Evidence ( 0 )
          Allele
          Disease
          Interaction
          References
          Alleles Representing Disease-Implicated Variants
          Genetic Tools, Stocks and Reagents
          Sources of Stocks
          Contact lab of origin for a reagent not available from a public stock center.
          Bloomington Stock Center Disease Page
          Related mammalian, viral, bacterial, or synthetic transgenes
          Allele
          Transgene
          Publicly Available Stocks
          Selected Drosophila transgenes
          Allele
          Transgene
          Publicly Available Stocks
          RNAi constructs available
          Allele
          Transgene
          Publicly Available Stocks
          Selected Drosophila classical alleles
          Allele
          Allele class
          Mutagen
          Publicly Available Stocks
          References (4)