首页> 外文期刊>Molecular and Cellular Biochemistry >Glycosylphosphatidylinositol-anchored arginine-specific ADP-ribosyltransferase7.1 (Art7.1) on chicken B cells: the possible role of Art7 in B cell receptor signalling and proliferation
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Glycosylphosphatidylinositol-anchored arginine-specific ADP-ribosyltransferase7.1 (Art7.1) on chicken B cells: the possible role of Art7 in B cell receptor signalling and proliferation

机译:鸡B细胞上糖基磷脂酰肌醇锚定的精氨酸特异性ADP-核糖基转移酶7.1(Art7.1):Art7在B细胞受体信号传导和增殖中的可能作用

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摘要

Arginine-specific ADP-ribosyltransferase (Art) catalyzes the mono-ADP-ribosylation, in which it transfers a single ADP-ribose moiety of NAD to the arginine residue(s) of target proteins, and may regulate the function of the proteins or peptides in cellular processes. In vertebrates, Art family is consisted of seven members (Arts1–7), and these Arts are distributed among various tissues except B lymphocytes. Previously, we described molecular cloning, characterization and distribution of glycosylphosphatidylinositol (GPI)-anchored Arts, Art7.1 and Art7.2 (formerly, we referred as cgArt1 and cgArt2, respectively) in chicken tissues (Terashima et al (2005) Biochem J 389:853–861). Here, we demonstrate for the first time that Art7.1 was predominantly expressed on the surface of B cells from the bursa of Fabricius as a GPI-anchored form, as well as on T cells from the thymocytes. Furthermore, we show that the expression of Art7.1 molecules on B cells could modulate the B cell receptor (BCR) signalling and direct the B cell fate to maturation. Thus, our present observation sheds light on the Art molecule expressed on B cells and its possible functional role in BCR signalling.
机译:精氨酸特异的ADP-核糖基转移酶(Art)催化单ADP-核糖基化,其中将NAD的一个ADP-核糖部分转移至目标蛋白质的精氨酸残基,并可能调节蛋白质或肽的功能在细胞过程中。在脊椎动物中,Art家族由七个成员组成(Arts1–7),并且这些Art分布在除B淋巴细胞之外的各种组织中。以前,我们描述了在鸡组织中糖基磷脂酰肌醇(GPI)锚定的Arts,Art7.1和Art7.2(以前分别称为cgArt1和cgArt2)的分子克隆,表征和分布(Terashima等人(2005)Biochem J 389:853–861)。在这里,我们首次证明Art7.1主要以GPI锚定形式在Fabricius滑囊的B细胞表面以及在胸腺细胞T细胞上表达。此外,我们表明Art7.1分子在B细胞上的表达可以调节B细胞受体(BCR)信号传导,并指导B细胞命运走向成熟。因此,我们目前的观察揭示了B细胞上表达的Art分子及其在BCR信号传导中的可能功能。

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