Neurogenetic disorders associated with mutations in the FERRY complex: a novel disease class?
R Madison Riffe1,2, Gerald B Downes1,2,3
1Neuroscience and Behavior Graduate Program, University of Massachusetts Amherst, Amherst, MA, 01003, USA.
Abstract:
The five-subunit endosomal Rab5 and RNA/ribose intermediary (FERRY) complex is a newly described protein complex consisting of TBCK, PPP1R21, FERRY3 (previously C12orf4), CRYZL1, and GATD1. The FERRY complex is proposed to function as a Rab5 effector to shuttle mRNA to the cell periphery for local translation, a process especially important in cells with far reaching processes. Interestingly, three members of the FERRY complex are associated with ultra-rare neurogenetic disorders. Mutation of TBCK causes TBCK syndrome, mutation of PPP1R21 is associated with PPP1R21-related intellectual disability, and mutation of FERRY3 results in an autosomal recessive intellectual disability. Neurologic disorders have yet to be associated with mutation of GATD1 or CRYZL1. Here, we provide a review of each FERRY complex-related neurologic disorder and draw clinical comparisons between the disease states. We also discuss data from the current cellular and animal models available to study these disorders, which is notably disparate and scattered across different cell types and systems. Taken together, we explore the possibility that these three diseases may represent one shared disease class, which could be further understood by combining and comparing known information about each individual disease. If true, this could have substantial implications on our understanding of the cellular role of the FERRY complex and on treatment strategies for affected individuals, allowing researchers, clinicians, and patient organizations to maximize the utility of research efforts and resources to support patients with these disorders.
Insights
The FERRY complex, involved in mRNA transport, links three rare neurogenetic disorders. Research suggests these conditions may share a common disease class, aiding understanding and treatment.
Area of Science:
- Cell Biology
- Neurogenetics
- Molecular Biology
Background:
- The endosomal Rab5 and RNA/ribose intermediary (FERRY) complex is a novel five-subunit protein assembly.
- The FERRY complex is hypothesized to function as a Rab5 effector, facilitating mRNA transport to the cell periphery for local translation.
- Three FERRY complex components (TBCK, PPP1R21, FERRY3) are linked to distinct ultra-rare neurogenetic disorders.
Purpose of the Study:
- To review FERRY complex-related neurologic disorders and compare their clinical presentations.
- To discuss existing cellular and animal models for studying these disorders.
- To explore the potential for a shared disease class among these conditions and its implications.
Main Methods:
- Literature review of FERRY complex-related neurologic disorders.
- Comparative analysis of clinical disease states.
- Examination of available cellular and animal model data.
Main Results:
- TBCK mutations cause TBCK syndrome; PPP1R21 mutations are associated with intellectual disability; FERRY3 mutations cause autosomal recessive intellectual disability.
- Neurologic disorders linked to GATD1 and CRYZL1 mutations are currently unknown.
- Available data on cellular and animal models are disparate across different cell types and systems.
Conclusions:
- The FERRY complex's role in neurogenetic disorders warrants further investigation.
- Consolidating information from individual diseases may illuminate a shared disease class.
- Understanding this potential shared class could enhance therapeutic strategies and research efforts for affected individuals.
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