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Published on: August 12, 2015
Ablation of the ATP-binding cassette transporter, Abca2 modifies response to estrogen-based therapies
Jody T Mack1, Carol B Brown, Tracy E Garrett
1Department of Cell and Molecular Pharmacology and Experimental Therapeutics, Medical University of South Carolina, Charleston, SC 29425, USA.
Abstract:
The ATP-binding cassette transporter 2 (ABCA2) is an endolysosomal protein expressed in oligodendrocytes and Schwann cells, prostate, ovary and macrophages. In cell cultures, ABCA2 over-expression has been linked with resistance to the anticancer agent, estramustine phosphate (EMP; a nor-nitrogen mustard conjugate of estradiol). The present study shows that Abca2 knockout (KO) mice have greater sensitivity to a variety of side effects induced by EMP treatment. Chronic EMP (12×100 mg/kg body weight) produced mortality in 36% of KO mice, but only 7% of age-matched wild type (WT). Side effects of the drug were also more prevalent in the KO mouse. For example, during the first week of EMP treatments, 67% of KO males (compared to 6% of WT males) responded with episodic erectile events. In WT mice, ABCA2 protein localized within pene corpuscles, (which rely on modified Schwann cells for amplification of tactile signals) suggesting that the transporter may function in the erectile process. Endothelial nitric oxide synthase (eNOS; a source of nitric oxide during erectile response) levels were similar in WT and KO male penile tissue. Treatment with 100 mg/kg EMP (once daily for four days) elevated serum estradiol and estrone in both WT and KO. However, the circulating levels of these estrogens were higher in KO mice implying a reduced plasma clearance of estrogens as a consequence of ABCA2 ablation. Consistent with the pro-convulsant effects of estrogens, KO mice also displayed an increased incidence of seizures following EMP (14% vs. 0%). Taken together, these data indicate that ABCA2 deficiency renders mice more sensitive to EMP treatment-induced effects implying that the transporter has a role in regulating EMP transport and/or metabolism.
Insights
Mice lacking the ATP-binding cassette transporter 2 (ABCA2) showed increased sensitivity to estramustine phosphate (EMP) side effects, including mortality and seizures. ABCA2 deficiency appears to affect EMP metabolism and estrogen clearance.
Area of Science:
- Biochemistry
- Pharmacology
- Genetics
Background:
- ATP-binding cassette transporter 2 (ABCA2) is an endolysosomal protein found in various cell types, including those in the prostate and nervous system.
- Overexpression of ABCA2 in cell cultures has been associated with resistance to the anticancer drug estramustine phosphate (EMP).
Purpose of the Study:
- To investigate the in vivo role of ABCA2 in estramustine phosphate (EMP) sensitivity and side effects using Abca2 knockout (KO) mice.
- To determine if ABCA2 influences the pharmacokinetics of EMP or its metabolites, particularly estrogens.
Main Methods:
- Abca2 knockout (KO) and wild-type (WT) mice were treated with chronic or acute doses of estramustine phosphate (EMP).
- Mortality rates, incidence of side effects (erectile events, seizures), and serum hormone levels (estradiol, estrone) were monitored.
- ABCA2 protein localization in penile tissue was examined in WT mice.
Main Results:
- KO mice exhibited significantly higher mortality (36% vs. 7%) and a greater prevalence of side effects, including erectile events (67% vs. 6% in males) and seizures (14% vs. 0%), following EMP treatment compared to WT mice.
- Elevated serum estradiol and estrone levels were observed in KO mice after EMP treatment, suggesting impaired estrogen clearance.
- ABCA2 protein was localized in penile corpuscles, indicating a potential role in the erectile process.
Conclusions:
- ABCA2 deficiency increases sensitivity to estramustine phosphate (EMP)-induced toxicity and side effects.
- The ABCA2 transporter plays a role in regulating EMP transport and/or metabolism, potentially by influencing estrogen clearance.
- These findings highlight ABCA2's involvement in drug response and physiological processes like erection.
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