Sant A J, Schwartz B D, Cullen S E
J Immunol. 1985 Jul;135(1):408-15.
The Ia-associated chondroitin sulfate proteoglycan (CSPG) found in anti-Ia and anti-invariant chain immunoprecipitates was originally detected in [35S] sulfate-labeled extracts derived from unseparated populations of splenocytes. To determine whether the CSPG was produced only by a subpopulation of spleen cells, we examined various cell populations for their ability to produce the CSPG. We found that B lymphocytes were the predominant source of CSPG in the spleen. The synthesis of the Ia-associated CSPG in spleen cell cultures was not diminished by the depletion of T cells or adherent cells. Moreover, the CSPG was readily detected in lysates derived from the Lyb-5- B cell subsets of xid mice, splenocytes from athymic (nude) mice, and in vitro B cell hybridomas. Peritoneal exudate macrophages from indomethacin-treated mice were also found to be capable of producing the CSPG. In all of the studies performed to date, no dissociation of the synthesis of the CSPG from the synthesis of Ia was observed in any cell type. We therefore tentatively conclude that all cells that synthesize conventional Ia molecules also synthesize the CSPG. Finally, we have been able to use anion exchange chromatography to prepare proteoglycan-enriched fractions to isolate the CSPG. This purification step has allowed us to convincingly demonstrate that the CSPG can be labeled with amino acids, and is a necessary step for detecting amino acid-labeled CSPG. This purification step method was used in the accompanying report to begin a quantitative examination of the Ia/CSPG complex, to monitor the kinetics of CSPG synthesis and association with Ia, and to determine its subcellular localization.
在抗Ia和抗不变链免疫沉淀物中发现的与Ia相关的硫酸软骨素蛋白聚糖(CSPG)最初是在未分离的脾细胞群体的[35S]硫酸盐标记提取物中检测到的。为了确定CSPG是否仅由脾细胞的亚群产生,我们检查了各种细胞群体产生CSPG的能力。我们发现B淋巴细胞是脾脏中CSPG的主要来源。脾细胞培养物中与Ia相关的CSPG的合成不会因T细胞或贴壁细胞的耗尽而减少。此外,在xid小鼠的Lyb-5 - B细胞亚群、无胸腺(裸)小鼠的脾细胞和体外B细胞杂交瘤的裂解物中很容易检测到CSPG。还发现来自吲哚美辛处理小鼠的腹腔渗出巨噬细胞能够产生CSPG。在迄今为止进行的所有研究中,在任何细胞类型中均未观察到CSPG的合成与Ia的合成解离。因此,我们初步得出结论,所有合成常规Ia分子的细胞也合成CSPG。最后,我们能够使用阴离子交换色谱法制备富含蛋白聚糖的级分以分离CSPG。这一纯化步骤使我们能够令人信服地证明CSPG可以用氨基酸标记,并且是检测氨基酸标记的CSPG的必要步骤。在随附报告中使用此纯化步骤方法开始对Ia/CSPG复合物进行定量检查,监测CSPG合成及其与Ia结合的动力学,并确定其亚细胞定位。