Dual Role of Dysfunctional Asc-1 Transporter in Distinct Human Pathologies, Human Startle Disease, and Developmental Delay

Author:

Drehmann Paul,Milanos Sinem,Schaefer NataschaORCID,Kasaragod Vikram Babu,Herterich Sarah,Holzbach-Eberle Ulrike,Harvey Robert J.,Villmann CarmenORCID

Abstract

Human startle disease is associated with mutations in distinct genes encoding glycine receptors, transporters or interacting proteins at glycinergic synapses in spinal cord and brainstem. However, a significant number of diagnosed patients does not carry a mutation in the common genesGLRA1,GLRB, andSLC6A5. Recently, studies on solute carrier 7 subfamily 10 (SLC7A10; Asc-1, alanine-serine-cysteine transporter) knock-out (KO) mice displaying a startle disease-like phenotype hypothesized that this transporter might represent a novel candidate for human startle disease. Here, we screened 51 patients from our patient cohort negative for the common genes and found three exonic (one missense, two synonymous), seven intronic, and single nucleotide changes in the 5′ and 3′ untranslated regions (UTRs) in Asc-1. The identified missense mutation Asc-1G307Rfrom a patient with startle disease and developmental delay was investigated in functional studies. At the molecular level, the mutation Asc-1G307Rdid not interfere with cell-surface expression, but disrupted glycine uptake. Substitution of glycine at position 307 to other amino acids, e.g., to alanine or tryptophan did not affect trafficking or glycine transport. By contrast, G307K disrupted glycine transport similar to the G307R mutation found in the patient. Structurally, the disrupted function in variants carrying positively charged residues can be explained by local structural rearrangements because of the large positively charged side chain. Thus, our data suggest thatSLC7A10may represent a rare but novel gene associated with human startle disease and developmental delay.

Funder

Deutsche Forschungsgemeinschaft

Scientia

Willy Robert Pitzer Stiftung

Publisher

Society for Neuroscience

Subject

General Medicine,General Neuroscience

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Over-Production of the Human SLC7A10 in E. coli and Functional Assay in Proteoliposomes;International Journal of Molecular Sciences;2023-12-30

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