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来自人类白血病细胞和正常淋巴细胞的胞质糖皮质激素受体的多种形式和片段。

Multiple forms and fragments of cytosolic glucocorticoid receptors from human leukemic cells and normal lymphocytes.

作者信息

Sherman M R, Stevens Y W, Tuazon F B

出版信息

Cancer Res. 1984 Sep;44(9):3783-96.

PMID:6589045
Abstract

Therapy with glucocorticoids is generally more effective in acute lymphoblastic leukemia than in other types of human leukemia. Previous studies, however, have not revealed any consistent relationship between clinical responsiveness and the cellular or cytosolic concentration of glucocorticoid-binding sites. The objectives of this study were to determine whether there are intrinsic structural differences among the glucocorticoid receptors in various types of leukemic cells and normal lymphocytes and to investigate the role of endogenous peptidases in receptor degradation. Cytosols were prepared from fresh or rapidly frozen leukocytes from 6 healthy adults and 35 high-risk leukemia patients (median white blood cell count, 150,000 cells/microliter; median age, 13 years). Receptors were labeled with [3H]triamcinolone acetonide and quantitated by charcoal-dextran treatment or Sephadex LH-20 chromatography. Mean and median cytosolic receptor concentrations in 12 acute lymphoblastic leukemia specimens lacking the standard B-cell or T-cell markers ("null cells") were approximately 4-fold higher than in 23 other leukemic cell specimens. No other consistent differences in receptor content were observed. Agarose filtration and ultracentrifugation in hypotonic buffers containing 20 mM Na2MoO4 revealed complexes of similar size and shape in all clinical specimens tested and two established leukemic cell lines. They had Stokes radii (Rs) of 8.1 +/- 0.5 (S.D.) nm (n = 50), sedimentation coefficients of 9.5 +/- 0.3S (n = 40), molecular weights of approximately 330,000, and axial ratios (a/b) of approximately 12. In hypertonic, molybdate-free buffer, these oligomeric complexes were dissociated into subunits with Rs of 5.9 +/- 0.3 nm (n = 12) and a/b of 11 to 12, as observed previously for other receptors. Fragmentation of the oligomer and the subunit was evident in some cytosols. High activities of peptidases of various specificities were detected in leukemic cell cytosols, as in other cytosols, by fluorometric assays with derivatives of 7-amino-4-methylcoumarin. Receptor cleavage by these and other endogenous enzymes may account for previous observations of "abnormal" receptors in cytosols from some leukemic specimens. We conclude that intrinsic structural defects in the receptors are unlikely explanations for the unresponsiveness of some types of leukemia to steroid therapy.

摘要

糖皮质激素治疗在急性淋巴细胞白血病中通常比在其他类型的人类白血病中更有效。然而,先前的研究尚未揭示临床反应性与糖皮质激素结合位点的细胞或胞质浓度之间存在任何一致的关系。本研究的目的是确定不同类型白血病细胞和正常淋巴细胞中的糖皮质激素受体之间是否存在内在结构差异,并研究内源性肽酶在受体降解中的作用。从6名健康成年人和35名高危白血病患者(中位白细胞计数为150,000个细胞/微升;中位年龄为13岁)的新鲜或快速冷冻的白细胞中制备胞质溶胶。用[3H]曲安奈德标记受体,并通过活性炭-葡聚糖处理或Sephadex LH-20色谱法进行定量。在12个缺乏标准B细胞或T细胞标志物(“空细胞”)的急性淋巴细胞白血病标本中,胞质溶胶受体的平均浓度和中位数浓度比其他23个白血病细胞标本中的高约4倍。未观察到受体含量的其他一致差异。在含有20 mM Na2MoO4的低渗缓冲液中进行琼脂糖过滤和超速离心,发现在所有测试的临床标本和两个已建立的白血病细胞系中,复合物的大小和形状相似。它们的斯托克斯半径(Rs)为8.1±0.5(标准差)nm(n = 50),沉降系数为9.5±0.3S(n = 40),分子量约为330,000,轴比(a/b)约为12。在高渗、无钼酸盐的缓冲液中,这些寡聚复合物解离成亚基,Rs为5.9±0.3 nm(n = 12),a/b为11至12,如先前对其他受体所观察到的。在一些胞质溶胶中,寡聚体和亚基的片段化很明显。通过使用7-氨基-4-甲基香豆素衍生物的荧光测定法,在白血病细胞胞质溶胶中检测到了各种特异性肽酶的高活性,就像在其他胞质溶胶中一样。这些和其他内源性酶对受体的切割可能解释了先前在一些白血病标本的胞质溶胶中观察到的“异常”受体现象。我们得出结论,受体的内在结构缺陷不太可能是某些类型白血病对类固醇治疗无反应的原因。

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