Cai Shao-hui, Tan Yi, Ren Xian-da, Li Xiao-hong, Cai Shao-xi, Du Jun
Department of Clinical Pharmacology, Pharmacy School of Ji-nan University, Guangzhou 510612, China.
Acta Pharmacol Sin. 2004 Feb;25(2):152-60.
To investigate the possibility that a novel alpha-helix-defective mutant of stromal cell-derived factor-1alpha (SDF-1alpha) (SDF-1/54R) acts as an antagonist of CXC chemokine receptor 4 (CXCR4).
According to the genetic sequence of natural SDF-1alpha, a recombinant alpha-helix-defective mutant of SDF-1alpha was designed and some biologic characteristics of this mutant were demonstrated. The migration of Jurkat cells was assessed with chemotactic assay. ERK phosphorylation was analyzed by Western blot with a specific anti-phospho-ERK1/2 antibody. Intracellular calcium influx was examined by flow cytometer with a calcium indicator dye Fluo-3AM. The CXCR4 on the cell surface was detected by flow cytometer with a PE conjoined anti-human CXCR4 antibody.
Compared with native SDF-1alpha, SDF-1/54R displayed apparent decrease in chemotactic ability, ERK1/2 activation, and intracellular calcium influx in Jurkat cells. However, the binding to CXCR4 and inducing CXCR4 internalization of SDF-1/54R did not change outstandingly. Moreover, a competitive inhibitory effect of SDF-1/54R on the migration of Jurkat cells induced by native SDF-1alpha was confirmed.
Alpha-helix-defective mutant of SDF-1alpha, SDF-1/54R that remained both the N-terminus and the central beta-sheet region, decreased SDF-1alpha-mediated signaling and chemotaxis but did not influence CXCR4 internalization, which suggested that SDF-1/54R might be developed as an anti-CHIV inhibitor with high biological potency and low side-effect.
研究基质细胞衍生因子-1α(SDF-1α)的一种新型α-螺旋缺陷突变体(SDF-1/54R)作为CXC趋化因子受体4(CXCR4)拮抗剂的可能性。
根据天然SDF-1α的基因序列,设计了一种重组的SDF-1αα-螺旋缺陷突变体,并证实了该突变体的一些生物学特性。采用趋化试验评估Jurkat细胞的迁移。用特异性抗磷酸化ERK1/2抗体通过蛋白质印迹法分析ERK磷酸化。用钙指示剂Fluo-3AM通过流式细胞仪检测细胞内钙内流。用PE偶联的抗人CXCR4抗体通过流式细胞仪检测细胞表面的CXCR4。
与天然SDF-1α相比,SDF-1/54R在Jurkat细胞中的趋化能力、ERK1/2激活和细胞内钙内流明显降低。然而,SDF-1/54R与CXCR4的结合以及诱导CXCR4内化并没有显著变化。此外,证实了SDF-1/54R对天然SDF-1α诱导的Jurkat细胞迁移具有竞争性抑制作用。
保留了N端和中央β-折叠区域的SDF-1αα-螺旋缺陷突变体SDF-1/54R降低了SDF-1α介导的信号传导和趋化性,但不影响CXCR4内化,这表明SDF-1/54R可能被开发为一种具有高生物活性和低副作用的抗HIV抑制剂。