Genetic rescue of Leishmania deficiency in porphyrin biosynthesis creates mutants suitable for analysis of cellular events in uroporphyria and for photodynamic therapy

被引:63
作者
Sah, JF
Ito, H
Kolli, BK
Peterson, DA
Sassa, S
Chang, KP
机构
[1] Finch Univ Hlth Sci Chicago Med Sch, Dept Microbiol & Immunol, N Chicago, IL 60064 USA
[2] Finch Univ Hlth Sci Chicago Med Sch, Dept Neurosci, N Chicago, IL 60064 USA
[3] Rockefeller Univ, New York, NY 10021 USA
关键词
D O I
10.1074/jbc.M200107200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Leishmania was found deficient in at least five and most likely seven of the eight enzymes in the heme biosynthesis pathway, accounting for their growth requirement for heme compounds. The xenotransfection of this trypanosomatid protozoan led to their expression of the mammalian genes encoding delta-aminolevulinate (ALA) dehydratase and porphobilinogen deaminase, the second and the third enzymes of the pathway, respectively. These transfectants still require hemin or protoporphyrin IX for growth but produce porphyrin when ALA was supplied exogenously. Leishmania is thus deficient in all first three enzymes of the pathway. Uroporphyrin I was produced as the sole intermediate by these transfectants, further indicating that they are also deficient in at least two porphyrinogen-metabolizing enzymes downstream of porphobilinogen deaminase, i.e. uroporphyrinogen III co-synthase and uroporphyrinogen decarboxylase. Pulsing the transfectants with ALA induced their transition from aporphyria to uroporphyria. Uroporphyrin I emerged in these cells initially as diffused throughout the cytosol, rendering them sensitive to UV irradiation. The porphyrin was subsequently sequestered in cytoplasmic vacuoles followed by its release and accumulation in the extracellular milieu, concomitant with a reduced photosensitivity of the cells. These events may represent cellular mechanisms for disposing soluble toxic waste from the cytosol. Monocytic tumor cells were rendered photosensitive by infection with uroporphyric Leishmania, suggestive of their potential application for photodynamic therapy.
引用
收藏
页码:14902 / 14909
页数:8
相关论文
共 44 条
[1]  
ABBAS A, 1993, J BIOL CHEM, V268, P8541
[2]   Photodynamic therapy with 5-aminolaevulinic acid-induced porphyrins of an amelanotic melanoma in vivo [J].
Abels, C ;
Fritsch, C ;
Bolsen, K ;
Szeimies, RM ;
Ruzicka, T ;
Goerz, G ;
Goetz, AE .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 1997, 40 (01) :76-83
[3]  
Afonso S G, 1990, J Enzyme Inhib, V3, P303, DOI 10.3109/14756369009030379
[4]   QUANTITATION OF METHIONYL PEPTIDES IN NANOMOLE QUANTITIES BY A FLUOROMETRIC METHOD [J].
ANDERSON, WL ;
SHECHTER, Y ;
PARIKH, I .
ANALYTICAL BIOCHEMISTRY, 1978, 91 (02) :481-489
[5]  
BEAUMONT C, 1989, J BIOL CHEM, V264, P14829
[6]   Characterization of mitochondrial electron-transfer in Leishmania mexicana [J].
Bermúdez, R ;
Dagger, F ;
D'Aquino, JA ;
Benaim, G ;
Dawidowicz, K .
MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 1997, 90 (01) :43-54
[7]  
CHANG CS, 1985, MOL BIOCHEM PARASIT, V16, P267, DOI 10.1016/0166-6851(85)90069-6
[8]   Leishmania virulence and genetic heterogeneity [J].
Chang, KP ;
Akman, L ;
Nielsen, JS .
CLINICS IN DERMATOLOGY, 1999, 17 (03) :269-273
[9]  
CHANG KP, 1983, INT REV CYTOL, P267
[10]   HEME BIOSYNTHESIS IN BACTERIUM-PROTOZOON SYMBIOSES - ENZYMIC DEFECTS IN HOST HEMOFLAGELLATES AND COMPLEMENTAL ROLE OF THEIR INTRACELLULAR SYMBIOTES [J].
CHANG, KP ;
CHANG, CS ;
SASSA, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1975, 72 (08) :2979-2983