Borghesi L A, Smithson G, Kincade P W
Immunobiology and Cancer Program, Oklahoma Medical Research Foundation, Oklahoma City 73104, USA.
J Immunol. 1997 Nov 1;159(9):4171-9.
The bone marrow microenvironment influences whether a given B cell proliferates, differentiates, or undergoes apoptosis. In this report, we demonstrate that apoptosis of primary murine B lymphocyte precursors can be regulated either positively or negatively by stroma. Several stromal lines that support lymphocyte outgrowth suppressed the spontaneous apoptosis of pre-B cells by as much as 90%. Direct contact with stromal cells more effectively protected lymphocytes than did stromal cell-CM or a collection of recombinant cytokines. In contrast, one unique stromal cell clone actually induced lymphocyte apoptosis, and a second line appeared inert. A survey of adherent cell lines suggested that expression of life-sparing molecules is widespread but not ubiquitous. Experiments with neutralizing Abs to CD44, vascular cell adhesion molecule-1 (VCAM-1), CD9, intercellular adhesion molecule-1 (ICAM-1), or ICAM-2 suggested that these interaction molecules do not deliver short-term survival signals to B cell precursors. Of particular interest, direct interaction with lymphocyte-supportive stromal cells minimized the negative regulatory effects of IL-1alpha, and a glucocorticoid, but not IFN-beta or PGE2. These results demonstrate that the effect of negative regulators depends upon the context in which these signals are presented. As molecules that influence B lymphopoiesis are better defined, it will be important to consider the role of each in combination with other stimuli.
骨髓微环境会影响特定B细胞是增殖、分化还是发生凋亡。在本报告中,我们证明了原代鼠B淋巴细胞前体的凋亡可受到基质的正向或负向调控。几种支持淋巴细胞生长的基质细胞系可将前B细胞的自发凋亡抑制多达90%。与基质细胞直接接触比基质细胞条件培养基或一组重组细胞因子更有效地保护淋巴细胞。相比之下,一个独特的基质细胞克隆实际上诱导了淋巴细胞凋亡,而另一个细胞系则表现出无活性。对贴壁细胞系的调查表明,具有保护作用的分子表达广泛但并非普遍存在。用针对CD44、血管细胞黏附分子-1(VCAM-1)、CD9、细胞间黏附分子-1(ICAM-1)或ICAM-2的中和抗体进行的实验表明,这些相互作用分子不会向B细胞前体传递短期存活信号。特别有趣的是,与支持淋巴细胞的基质细胞直接相互作用可将IL-1α和一种糖皮质激素的负调控作用降至最低,但对IFN-β或PGE2则无此作用。这些结果表明,负调控因子的作用取决于这些信号呈现的背景。随着影响B淋巴细胞生成的分子得到更明确的定义,考虑每种分子与其他刺激因素联合作用的角色将很重要。