A heteroplasmic point mutation of mitochondrial tRNA(Leu)(CUN) in non-lymphoid haemopoietic cell lineages from a patient with acquired idiopathic sideroblastic anaemia

被引:36
作者
Gattermann, N [1 ]
Retzlaff, S [1 ]
Wang, YL [1 ]
Berneburg, M [1 ]
Heinisch, J [1 ]
Wlaschek, M [1 ]
Aul, C [1 ]
Schneider, W [1 ]
机构
[1] UNIV DUSSELDORF,DEPT DERMATOL,D-40225 DUSSELDORF,GERMANY
关键词
myelodysplastic syndrome; sideroblastic anaemia; haem synthesis; mitochondrial DNA; tRNA mutation;
D O I
10.1046/j.1365-2141.1996.d01-1724.x
中图分类号
R5 [内科学];
学科分类号
1002 [临床医学]; 100201 [内科学];
摘要
Acquired idiopathic sideroblastic anaemia (AISA) has been proposed to be a disorder of mitochondrial DNA (mtDNA). The hallmark of mitochondrial iron overload may be attributable to a respiratory chain defect leading to impaired reduction of ferric iron (Fe3+) to ferrous iron (Fe2+), which is essential to the last step of mitochondrial haem biosynthesis. In a 71-year-old patient we identified a point mutation in one of the two mitochondrial transfer-RNAs coding for leucine (tRNA(leu(CUN))). The mutation involves a G --> A transition in the anticodon loop, immediately adjacent to the anticodon triplet (mtDNA position 12301). The mutated guanine is highly conserved in a wide range of species. The mutation is heteroplasmic, i.e. there is a mixture of normal and mutated mitochondrial genomes (ratio c. 50:50). Heteroplasmy of mtDNA is not found in normal individuals, but is a typical feature of mitochondrial cytopathies. The point mutation was present in the patient's bone marrow and whole blood samples, in purified platelets, and in the granulocyte/erythrocyte pellet after mononuclear cell separation by density gradient centrifugation. The mutation was not found in T- and B-lymphocytes isolated by immunomagnetic bead separation. It was also absent from buccal mucosa cells and cultured skin fibroblasts. This pattern of involvement suggests that the mutation occurred in a self-renewing myeloid stem cell of the CFU-GEMM type.
引用
收藏
页码:845 / 855
页数:11
相关论文
共 74 条
[1]
CYTOGENETIC AND CYTOCHEMICAL STUDIES ON PROGENITOR CELLS OF PRIMARY ACQUIRED SIDEROBLASTIC ANEMIA (PASA) - INVOLVEMENT OF MULTIPOTENT MYELOID STEM-CELLS IN PASA CLONE AND MOSAICISM WITH NORMAL CLONE [J].
AMENOMORI, T ;
TOMONAGA, M ;
JINNAI, I ;
SODA, H ;
NONAKA, H ;
MATSUO, T ;
YOSHIDA, Y ;
KURIYAMA, K ;
ICHIMARU, M ;
SUEMATSU, T .
BLOOD, 1987, 70 (05) :1367-1372
[2]
SEQUENCE AND ORGANIZATION OF THE HUMAN MITOCHONDRIAL GENOME [J].
ANDERSON, S ;
BANKIER, AT ;
BARRELL, BG ;
DEBRUIJN, MHL ;
COULSON, AR ;
DROUIN, J ;
EPERON, IC ;
NIERLICH, DP ;
ROE, BA ;
SANGER, F ;
SCHREIER, PH ;
SMITH, AJH ;
STADEN, R ;
YOUNG, IG .
NATURE, 1981, 290 (5806) :457-465
[3]
REFRACTORY-ANEMIA AND MITOCHONDRIAL CYTOPATHY IN CHILDHOOD [J].
BADERMEUNIER, B ;
ROTIG, A ;
MIELOT, F ;
LAVERGNE, JM ;
CROISILLE, L ;
RUSTIN, P ;
LANDRIEU, P ;
DOMMERGUES, JP ;
MUNNICH, A ;
TCHERNIA, G .
BRITISH JOURNAL OF HAEMATOLOGY, 1994, 87 (02) :381-385
[4]
BALLINGER SW, 1992, GENETICS, V130, P139
[5]
UTILIZATION OF IRON AND ITS COMPLEXES BY MAMMALIAN MITOCHONDRIA [J].
BARNES, R ;
CONNELLY, JL ;
JONES, OTG .
BIOCHEMICAL JOURNAL, 1972, 128 (05) :1043-+
[6]
AVAILABILITY OF IRON FOR HEME SYNTHESIS IN RED BLOOD-CELLS [J].
BARNES, R ;
JONES, OTG .
BIOCHIMICA ET BIOPHYSICA ACTA, 1973, 304 (02) :304-308
[7]
BINDOFF LA, 1993, J BIOL CHEM, V268, P19559
[8]
BOURGERON T, 1993, J BIOL CHEM, V268, P19369
[9]
CANN RL, 1984, GENETICS, V106, P479
[10]
MITOCHONDRIAL-DNA AND HUMAN-EVOLUTION [J].
CANN, RL ;
STONEKING, M ;
WILSON, AC .
NATURE, 1987, 325 (6099) :31-36