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Gain-of-Function Variant <i>TRPC6 A404V</i> Is Associated With Doxorubicin-Related Cardiomyopathy.


ABSTRACT:

Background

TRPC6 (transient receptor potential canonical 6) channels, encoded by the TRPC6 gene, are widely expressed in cardiomyocytes and play a critical role in maintaining intracellular Ca2+ homeostasis. Variants in TRPC6 are associated with chemotherapy-related cardiomyopathy. Specifically, the TRPC6 A404V polymorphism, with a minor (404 V) allele frequency of 12% in the general population, has been identified in patients undergoing anthracycline therapy. However, the underlying mechanisms remain largely unexplored.

Methods

Using patch-clamp recordings, Ca2+ imaging, computational analysis, and molecular biology techniques, we assessed the effects of doxorubicin and its metabolite, doxorubicinol, on regulating TRPC6 alanine (A) at position 404 replaced by valine (V; A404V) channel expression and function in a heterologous expression system and native cardiac cells.

Results

Both additive and recessive models demonstrated a significant association between the TRPC6 A404V variant and doxorubicin-related cardiomyopathy. The TRPC6 A404V channel exhibited higher membrane expression levels compared with the wild type (WT) control. Patch-clamp recordings showed that both TRPC6 WT and A404V channels remained mostly inactive at baseline. Application of 50 μmol/L 1-oleoyl acetyl-sn-glycerol (OAG), a TRPC6 activator, significantly increased the inward- and outward-current densities of WT and A404V channels. Furthermore, a 24-hour treatment with 0.5 μmol/L doxorubicin enhanced TRPC6 mRNA expression and potentiated the OAG effects on both WT and A404V channels, with a more pronounced response in A404V channels. Treatment with 0.5 μmol/L doxorubicinol had no effect on OAG-induced current densities in either WT or A404V channels. Doxorubicin effects on intracellular Ca2+ levels were confirmed by Ca2+ imaging in native cardiac cells. Computational modeling revealed that the A404V mutation induces a conformational change in the OAG-binding pocket, enhancing its interaction with OAG in the A404V protein compared with the WT control.

Conclusions

The TRPC6 A404V is a gain-of-function variant that exhibits enhanced activity in the presence of doxorubicin. Therefore, the TRPC6 A404V variant represents a risk factor for anthracycline-induced cardiotoxicity in patients with cancer.

SUBMITTER: Wu Y 

PROVIDER: S-EPMC12914740 | biostudies-literature | 2026 Feb

REPOSITORIES: biostudies-literature

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Publications

Gain-of-Function Variant &lt;i&gt;TRPC6 A404V&lt;/i&gt; Is Associated With Doxorubicin-Related Cardiomyopathy.

Wu Ying Y   Sun Xiaojing X   Wang Ru-Xing RX   Reddy Joseph S JS   Lee Hon-Chi HC   Norton Nadine N   Lu Tong T  

Circulation. Genomic and precision medicine 20260128 1


<h4>Background</h4>TRPC6 (transient receptor potential canonical 6) channels, encoded by the <i>TRPC6</i> gene, are widely expressed in cardiomyocytes and play a critical role in maintaining intracellular Ca<sup>2</sup><sup>+</sup> homeostasis. Variants in <i>TRPC6</i> are associated with chemotherapy-related cardiomyopathy. Specifically, the <i>TRPC6 A404V</i> polymorphism, with a minor (404 V) allele frequency of 12% in the general population, has been identified in patients undergoing anthrac  ...[more]

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