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PMID: 12429862 已发表 · ppublish 英语

The breast cancer resistance protein protects against a major chlorophyll-derived dietary phototoxin and protoporphyria.

Jonker Johan W, Buitelaar Marije, Wagenaar Els, Van Der Valk Martin A, Scheffer George L, Scheper Rik J, Plosch Torsten, Kuipers Folkert, Elferink Ronald P J Oude, Rosing Hilde, Beijnen Jos H, Schinkel Alfred H

摘要

The breast cancer resistance protein (BCRPABCG2) is a member of the ATP-binding cassette family of drug transporters and confers resistance to various anticancer drugs. We show here that mice lacking Bcrp1Abcg2 become extremely sensitive to the dietary chlorophyll-breakdown product pheophorbide a, resulting in severe, sometimes lethal phototoxic lesions on light-exposed skin. Pheophorbide a occurs in various plant-derived foods and food supplements. Bcrp1 transports pheophorbide a and is highly efficient in limiting its uptake from ingested food. Bcrp1(-/-) mice also displayed a previously unknown type of protoporphyria. Erythrocyte levels of the heme precursor and phototoxin protoporphyrin IX, which is structurally related to pheophorbide a, were increased 10-fold. Transplantation with wild-type bone marrow cured the protoporphyria and reduced the phototoxin sensitivity of Bcrp1(-/-) mice. These results indicate that humans or animals with low or absent BCRP activity may be at increased risk for developing protoporphyria and diet-dependent phototoxicity and provide a striking illustration of the importance of drug transporters in protection from toxicity of normal food constituents.

文献信息
期刊
Proceedings of the National Academy of Sciences of the United States of America
期刊简称
Proc Natl Acad Sci U S A
发表日期
2003-01-14
收录日期
2002-11-27
更新日期
2016-11-24
语言
英语
国家/地区
United States
NLM ID
7505876
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