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A GRM7 mutation associated with developmental delay reduces mGlu7 expression and produces neurological phenotypes
Nicole M. Fisher, Aqeela AlHashim, Aditi B. Buch, Hana Badivuku, Manar M. Samman, Kelly M. Weiss, Gabriela I. Cestero, Mark D. Does, Jerri M. Rook, Craig W. Lindsley, P. Jeffrey Conn, Rocco G. Gogliotti, Colleen M. Niswender
Nicole M. Fisher, Aqeela AlHashim, Aditi B. Buch, Hana Badivuku, Manar M. Samman, Kelly M. Weiss, Gabriela I. Cestero, Mark D. Does, Jerri M. Rook, Craig W. Lindsley, P. Jeffrey Conn, Rocco G. Gogliotti, Colleen M. Niswender
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Research Article Neuroscience

A GRM7 mutation associated with developmental delay reduces mGlu7 expression and produces neurological phenotypes

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Abstract

The metabotropic glutamate receptor 7 (mGlu7) is a G protein–coupled receptor that has been recently linked to neurodevelopmental disorders. This association is supported by the identification of GRM7 variants in patients with autism spectrum disorder, attention deficit hyperactivity disorder, and severe developmental delay. One GRM7 mutation previously reported in 2 patients results in a single amino acid change, I154T, within the mGlu7 ligand-binding domain. Here, we report 2 new patients with this mutation who present with severe developmental delay and epilepsy. Functional studies of the mGlu7-I154T mutant reveal that this substitution resulted in significant loss of mGlu7 protein expression in HEK293A cells and in mice. We show that this occurred posttranscriptionally at the level of protein expression and trafficking. Similar to mGlu7–global KO mice, mGlu7-I154T animals exhibited reduced motor coordination, deficits in contextual fear learning, and seizures. This provides functional evidence that a disease-associated mutation affecting the mGlu7 receptor was sufficient to cause neurological dysfunction in mice and further validates GRM7 as a disease-causing gene in the human population.

Authors

Nicole M. Fisher, Aqeela AlHashim, Aditi B. Buch, Hana Badivuku, Manar M. Samman, Kelly M. Weiss, Gabriela I. Cestero, Mark D. Does, Jerri M. Rook, Craig W. Lindsley, P. Jeffrey Conn, Rocco G. Gogliotti, Colleen M. Niswender

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Figure 4

mGlu7-I154T receptors are expressed on the cell surface and responsive to pharmacological stimulation.

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mGlu7-I154T receptors are expressed on the cell surface and responsive t...
(A) Quantification of surface HA signal in HEK293A cells expressing HA-mGlu7-WT or HA-mGlu7-I154T as measured by cell surface ELISA. (B) Quantification of surface-to-intracellular ratio for HA signal in cell surface ELISA experiments. For A and B, n = 3 individual experiments with 3 technical replicates each. Two-tailed Student’s t tests. *P < 0.05, ****P < 0.0001. (C) Concentration-response curves of cells treated with the agonist L-AP4 in a thallium flux assay. (D) Quantification of the maximum response in panel C. Two-tailed Student’s t test. **P < 0.01. (E and F) Concentration-response curves of cells expressing HA-mGlu7-WT (E) or HA-mGlu7-I154T (F) in response to L-AP4 with 30 μM VU0422288 (VU288) or vehicle (DMSO) pretreatment. DMSO curves are the same data presented in panels C and D. (G) Quantification of maximum responses in panels E and F. Two-way ANOVA with Tukey’s multiple comparisons. Stars indicate comparisons between DMSO and VU288 conditions within genotype. Pound signs indicate comparisons of DMSO conditions between genotype. ***/### P < 0.001. For C and G, n = 3 independent experiments with 2 technical replicates each. mGlu7, metabotropic glutamate receptor subtype 7.

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