Jin Y J, Yu C L, Burakoff S J
Department of Pediatric Oncology, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 1999 Oct 1;274(40):28301-7. doi: 10.1074/jbc.274.40.28301.
The tyrosine phosphatase SHP-1 functions as a negative regulator in hematopoietic cell development, proliferation, and receptor-mediated cellular activation. In Jurkat T cells, a major 68-kDa band and a minor 70-kDa band were immunoprecipitated by a monoclonal antibody against the SHP-1 protein-tyrosine phosphatase domain, while an antibody against the SHP-1 C-terminal 19 amino acids recognized only the 68-kDa SHP-1. The SDS-gel-purified 70-kDa protein was subjected to tryptic mapping and microsequencing, which was followed by molecular cloning. It revealed that the 70-kDa protein, termed SHP-1L, is a C-terminal alternatively spliced form of SHP-1. SHP-1L is 29 amino acids longer than SHP-1, and its 66 C-terminal amino acids are different from SHP-1. The C terminus of SHP-1L contains a proline-rich motif PVPGPPVLSP, a potential Src homology 3 domain-binding site. In contrast to SHP-1, tyrosine phosphorylation of SHP-1L is not detected upon stimulation in Jurkat T cells. This is apparently due to the lack of a single in vivo tyrosine phosphorylation site, which only exists in the C terminus of SHP-1 (Y564). COS cell-expressed glutathione S-transferase-SHP-1L can dephosphorylate tyrosine-phosphorylated ZAP70. At pH 7.4, SHP-1L was shown to be more active than SHP-1 in the dephosphorylation of ZAP70. At pH 5.4, SHP-1L and SHP-1 exhibited similar catalytic activity. It is likely that these two isoforms play different roles in the regulation of hematopoietic cell signal transduction.
酪氨酸磷酸酶SHP-1在造血细胞发育、增殖及受体介导的细胞激活过程中发挥负调节作用。在Jurkat T细胞中,一种抗SHP-1蛋白酪氨酸磷酸酶结构域的单克隆抗体免疫沉淀出一条主要的68 kDa条带和一条次要的70 kDa条带,而一种抗SHP-1 C末端19个氨基酸的抗体仅识别68 kDa的SHP-1。对经SDS凝胶纯化的70 kDa蛋白进行胰蛋白酶图谱分析和微量测序,随后进行分子克隆。结果显示,这种70 kDa的蛋白被命名为SHP-1L,是SHP-1的一种C末端选择性剪接形式。SHP-1L比SHP-1长29个氨基酸,其66个C末端氨基酸与SHP-1不同。SHP-1L的C末端包含一个富含脯氨酸的基序PVPGPPVLSP,这是一个潜在的Src同源3结构域结合位点。与SHP-1不同,在Jurkat T细胞受到刺激后未检测到SHP-1L的酪氨酸磷酸化。这显然是由于缺乏一个仅存在于SHP-1 C末端(Y564)的体内酪氨酸磷酸化位点。COS细胞表达的谷胱甘肽S-转移酶-SHP-1L能够使酪氨酸磷酸化的ZAP70去磷酸化。在pH 7.4时,SHP-1L在ZAP70去磷酸化过程中比SHP-1更具活性。在pH 5.4时,SHP-1L和SHP-1表现出相似的催化活性。这两种同工型可能在造血细胞信号转导调节中发挥不同作用。