Nagata T, Nakamura M, Kawauchi H, Tanigawa Y
Department of Otolaryngology, Shimane Medical University, Izumo, Japan.
Biochim Biophys Acta. 1998 Mar 5;1401(3):319-28. doi: 10.1016/s0167-4889(97)00131-6.
Monoclonal nonspecific suppressor factor (MNSF), a lymphokine produced by a murine hybridoma, was originally found to inhibit the generation of LPS-induced immunoglobulin secreting cells. MNSF comprises of MNSF beta, an isoform of MNSF, and the other isoform, MNSF alpha. Ubiquitin-like segment (Ubi-L) of MNSF beta shows MNSF-like activity. Ubi-L (7.8 kDa) has 36% homology with 8.5 kDa ubiquitin. GST-Ubi-L was labeled with 125I by the chloramine T method and tested for its conjugation to acceptor in splenocyte lysates. 125I-GST-Ubi-L conjugation on SDS-PAGE showed heterogeneous bands including 95 kDa GST-Ubi-L conjugation in the splenocyte, but not reticulocyte lysates. The Ubi-L adduct appeared to be MNSF-related molecule because anti-MNSF monoclonal antibody (mAb) recognized the 95 kDa band. The pattern of the conjugations was different from that seen in ubiquitination. Unlabeled GST-Ubi-L inhibited the conjugations, while ubiquitin did not. alpha-Lactalbumin, one of the target proteins for ubiquitination, failed to conjugate to GST-Ubi-L. In addition, covalent conjugation of ubiquitin to reticulocyte lysates was also interfered by GST-Ubi-L. These results suggest that Ubi-L may conjugate to acceptor proteins in a similar, but not in the same way as ubiquitination, and might play an important role in lymphoid cells.
单克隆非特异性抑制因子(MNSF)是一种由小鼠杂交瘤产生的淋巴因子,最初发现它能抑制脂多糖诱导的免疫球蛋白分泌细胞的生成。MNSF由MNSFβ(MNSF的一种异构体)和另一种异构体MNSFα组成。MNSFβ的泛素样片段(Ubi-L)具有类似MNSF的活性。Ubi-L(7.8 kDa)与8.5 kDa的泛素具有36%的同源性。通过氯胺T法用125I标记谷胱甘肽S-转移酶-Ubi-L(GST-Ubi-L),并检测其与脾细胞裂解物中受体的结合情况。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)上125I-GST-Ubi-L的结合显示出异质条带,包括脾细胞中95 kDa的GST-Ubi-L结合条带,但在网织红细胞裂解物中未出现。Ubi-L加合物似乎是与MNSF相关的分子,因为抗MNSF单克隆抗体(mAb)识别出95 kDa的条带。这种结合模式与泛素化不同。未标记的GST-Ubi-L抑制了结合,而泛素则没有。α-乳白蛋白是泛素化的靶蛋白之一,未能与GST-Ubi-L结合。此外,GST-Ubi-L也干扰了泛素与网织红细胞裂解物的共价结合。这些结果表明,Ubi-L可能以与泛素化相似但不同的方式与受体蛋白结合,并可能在淋巴细胞中发挥重要作用。