Goldman R, Sopher O
Department of Membrane Research, Weizmann Institute of Science, Rehovot, Israel.
Biochim Biophys Acta. 1989 Feb 6;1001(2):120-6. doi: 10.1016/0005-2760(89)90137-9.
The regulation of secretion of lipoprotein lipase (LPL) was studied in in vitro-derived mouse bone marrow macrophages (BMM), peritoneal exudate and resident macrophages and in the macrophage-like tumor cell line J774.1. BMM in cultures initiated with low concentrations of bone marrow cells (LC-BMC cultures) secrete more LPL per cell than BMM in cultures initiated with high concentrations of bone marrow cells (HC-BMC cultures). The suppressed state of LPL secretion in HC-BMC cultures could be alleviated by the addition of a colony-stimulating factor source (L-cell-conditioned medium; L-CM) onto the culture medium or exchanging the medium of HC-BMC cultures with medium from LC-BMC cultures for short periods (4 h). Addition of L-CM increased LPL secretion also in LC-BMC cultures. Addition of L-CM to fresh culture medium had little or no effect, suggesting that, in addition to requirement for L-CM, optimal expression depended also on factors released by the growing cells, probably providing optimal growth conditions. L-CM enhanced LPL secretion by thioglycollate-elicited peritoneal macrophages and had no effect on LPL secretion by resident peritoneal macrophages. Secretion of LPL from adherent J774.1 cells showed a biphasic effect. Secretion increased with cell density up to the point when growth inhibition was observed. In dense cultures in which cell proliferation was almost arrested, LPL secretion was remarkably suppressed (80-90%). Change of medium of dense cultures to fresh medium or medium conditioned by sparse cultures (for the last 4 h of culture) led to enhancement of LPL secretion to levels similar to those optimally expressed by sparse cultures. L-CM did not enhance LPL secretion from J774.1 cells. Dense cultures of both BMM and J774.1 cells did not contain a stable inhibitor of LPL secretion and medium from sparse cultures did not contain an inducer of LPL secretion. The data suggest that proliferating macrophages secrete large amounts of LPL, whereas in nonproliferating, quiescent cells, this activity is much reduced. L-CM enhances LPL secretion in quiescent BMM and peritoneal exudate cells to levels expressed by proliferating cells. Since this effect is already expressed after a 4 h incubation period, it is not dependent on cell cycling but could be one of the early responses to this macrophage mitogen. In J774.1 cells, a change of medium is a sufficient signal for enhancement of LPL secretion in quiescent cells.
我们在体外培养的小鼠骨髓巨噬细胞(BMM)、腹腔渗出液巨噬细胞和驻留巨噬细胞以及巨噬细胞样肿瘤细胞系J774.1中研究了脂蛋白脂肪酶(LPL)分泌的调节机制。与高浓度骨髓细胞起始培养的BMM(HC - BMC培养物)相比,低浓度骨髓细胞起始培养的BMM(LC - BMC培养物)中每个细胞分泌的LPL更多。在HC - BMC培养物中加入集落刺激因子来源(L - 细胞条件培养基;L - CM)或在短时间(4小时)内将HC - BMC培养物的培养基换成LC - BMC培养物的培养基,可以缓解HC - BMC培养物中LPL分泌的抑制状态。在LC - BMC培养物中加入L - CM也会增加LPL的分泌。将L - CM加入新鲜培养基中几乎没有效果,这表明除了需要L - CM外,最佳表达还取决于生长细胞释放的因子,可能是提供了最佳生长条件。L - CM可增强巯基乙酸诱导的腹腔巨噬细胞的LPL分泌,而对驻留腹腔巨噬细胞的LPL分泌没有影响。贴壁的J774.1细胞分泌LPL呈现双相效应。随着细胞密度增加,分泌增加,直至观察到生长抑制。在细胞增殖几乎停止的密集培养物中,LPL分泌显著受到抑制(80 - 90%)。将密集培养物的培养基换成新鲜培养基或稀疏培养物条件的培养基(培养的最后4小时)会使LPL分泌增强至与稀疏培养物最佳表达水平相似。L - CM不会增强J774.1细胞的LPL分泌。BMM和J774.1细胞的密集培养物中都不含有稳定的LPL分泌抑制剂,稀疏培养物的培养基中也不含有LPL分泌诱导剂。数据表明,增殖的巨噬细胞分泌大量LPL,而在非增殖的静止细胞中,这种活性大大降低。L - CM可将静止BMM和腹腔渗出细胞中的LPL分泌增强至增殖细胞表达的水平。由于这种效应在孵育4小时后就已出现,它不依赖于细胞周期,可能是对这种巨噬细胞有丝分裂原的早期反应之一。在J774.1细胞中,更换培养基是静止细胞中增强LPL分泌的充分信号。