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人 T、B 淋巴细胞分化成熟过程中 9-O-乙酰 GD3(CD60b)和 7-O-乙酰-GD3(CD60c)的差异表达。

Differentially regulated expression of 9-O-acetyl GD3 (CD60b) and 7-O-acetyl-GD3 (CD60c) during differentiation and maturation of human T and B lymphocytes.

机构信息

German Cancer Research Center, D015 Translational Immunology, Im Neuenheimer Feld 280, D-69120 Heidelberg, Germany.

出版信息

Glycobiology. 2011 Sep;21(9):1161-72. doi: 10.1093/glycob/cwr050. Epub 2011 Apr 19.

Abstract

GD3 (CD60a) and its 9-O-acetylated variant (CD60b) are intracellular regulators of apoptosis in T lymphocytes. Surface expressed 9-O-acetyl- and 7-O-acetyl-GD3 (CD60b and CD60c) may have a functional impact on activated T and B cells. In order to investigate the balance between surface and intracellular expression and synthesis and degradation of these glycosphingolipids in human lymphocytes of various differentiation stages, we analyzed (i) expression of GD3 molecules on native T and B cells and thymocytes by flow cytometry and (ii) activity and regulation of possible key enzymes for CD60a,b,c synthesis and degradation at the transcriptional level. Both, surface and cytoplasmic expression of CD60a and CD60c was highest in tonsillar T cells. In thymocytes, CD60c outweighs the other CD60 variants and was mainly found in the cytoplasm. All lymphocyte preparations contained sialate O-acetyltransferase activity producing 7-O-acetyl-GD3. Sialidase activity was highest in peripheral blood lymphocytes followed by thymocytes and tonsillar T and B cells. Transcription of GD3 synthase (ST8SiaI), the key enzyme for GD3 synthesis, was highest in tonsillar T cells, whereas transcriptional levels of sialidase NEU3 and O-acetylesterase H-Lse were lowest in activated T cells. This balance between enzymes of sialic acid metabolism may explain the strong overall staining intensity for all GD3 forms in T cells. Both CASD1, presumably encoding a sialic acid-specific O-acetyltransferase, and H-Lse showed highest transcription in peripheral B lymphocytes corresponding to the low expression of CD60b and c in these cells. Our data point to regulatory functions of these anabolic and catabolic key enzymes for the expression of GD3 and its O-acetylated variants in lymphocytes at a given differentiation stage.

摘要

GD3(CD60a)及其 9-O-乙酰化变体(CD60b)是 T 淋巴细胞凋亡的细胞内调节剂。表面表达的 9-O-乙酰基和 7-O-乙酰基-GD3(CD60b 和 CD60c)可能对激活的 T 和 B 细胞具有功能影响。为了研究这些糖脂在人不同分化阶段的淋巴细胞中表面和细胞内表达以及合成和降解之间的平衡,我们分析了 (i) 流式细胞术分析天然 T 和 B 细胞和胸腺细胞上 GD3 分子的表达,以及 (ii) 可能的关键酶的活性和调节对于 CD60a、b、c 的合成和降解的转录水平。在扁桃体 T 细胞中,CD60a 和 CD60c 的表面和细胞质表达均最高。在胸腺细胞中,CD60c 超过其他 CD60 变体,主要存在于细胞质中。所有淋巴细胞制剂均含有产生 7-O-乙酰基-GD3 的唾液酸 O-乙酰基转移酶活性。唾液酸酶活性在外周血淋巴细胞中最高,其次是胸腺细胞和扁桃体 T 和 B 细胞。GD3 合酶(ST8SiaI)的转录,即 GD3 合成的关键酶,在扁桃体 T 细胞中最高,而唾液酸酶 NEU3 和 O-乙酰酯酶 H-Lse 的转录水平在激活的 T 细胞中最低。这种唾液酸代谢酶的平衡可能解释了 T 细胞中所有 GD3 形式的整体染色强度较强。编码唾液酸特异性 O-乙酰基转移酶的 CASD1 和 H-Lse 在对应于这些细胞中 CD60b 和 c 低表达的外周 B 淋巴细胞中表现出最高的转录。我们的数据表明,这些合成代谢和分解代谢的关键酶在给定的分化阶段对淋巴细胞中 GD3 及其 O-乙酰化变体的表达具有调节功能。

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