Mayer P W, Schalch D S
Acta Endocrinol (Copenh). 1985 Oct;110(2):232-8. doi: 10.1530/acta.0.1100232.
Previous studies have provided evidence that biosynthesis and secretion of somatomedin (SM) is not only hormone dependent, but also modulated by nutritional factors. Little is known, however, about the role of divalent cations in these processes. A subclone of Buffalo rat liver (BRL) cells, known to secrete rat insulin-like growth factor-II (rIGF-II) into serum-free medium, was used to define the influence of Ca2+, Mg2+ and Zn2+ on this function. The secretion of rIGF-II by subclone BRL-3SC appears to be quite stable in minimal essential medium (MEM) over a wide range in Ca2+ concentrations (0.18-3.0 mM) but is reduced to only 8% of controls in the absence of Ca2+ (P less than 0.01). Reducing, and even eliminating, the extracellular concentration of Mg2+ alone caused no change in basal rIGF-II release, while simultaneously decreasing Mg2+ and Ca2+ results in a marked drop in the secretion of this SM, reaching a nadir of 38% of controls in the absence of Mg2+ (P less than 0.001). A Mg2+ concentration of 10 mM, or 25 times 'normal', did not alter the basal secretion of rIGF-II. Eliminating the trace amount (0.8 nM) of Zn2+ in MEM by chelation with EDTA decreased rIGF-II secretion to 62% of control levels (P less than 0.01), while increasing the concentration of this cation to 3 mM did not alter the basal release of this SM. Decreased rIGF-II release in the presence of EGTA and EDTA is not due to irreversible cell damage since the secretion of this SM was restored to normal during subsequent reincubation in MEM alone.(ABSTRACT TRUNCATED AT 250 WORDS)
先前的研究已提供证据表明,生长调节素(SM)的生物合成和分泌不仅依赖激素,还受营养因素调节。然而,关于二价阳离子在这些过程中的作用却知之甚少。一种已知能向无血清培养基中分泌大鼠胰岛素样生长因子-II(rIGF-II)的水牛大鼠肝脏(BRL)细胞亚克隆,被用于确定Ca2+、Mg2+和Zn2+对该功能的影响。在最低必需培养基(MEM)中,亚克隆BRL-3SC分泌rIGF-II的情况在较宽的Ca2+浓度范围(0.18 - 3.0 mM)内似乎相当稳定,但在无Ca2+时降至对照组的仅8%(P < 0.01)。单独降低甚至消除细胞外Mg2+浓度对基础rIGF-II释放无影响,而同时降低Mg2+和Ca2+会导致这种SM的分泌显著下降,在无Mg2+时降至对照组的38%的最低点(P < 0.001)。10 mM的Mg2+浓度,即“正常”浓度的25倍,并未改变rIGF-II的基础分泌。通过与EDTA螯合去除MEM中的痕量(0.8 nM)Zn2+会使rIGF-II分泌降至对照水平的62%(P < 0.01),而将该阳离子浓度增加至3 mM并未改变这种SM的基础释放。在EGTA和EDTA存在下rIGF-II释放减少并非由于不可逆的细胞损伤,因为在随后仅在MEM中再培养期间,这种SM的分泌恢复正常。(摘要截短于250字)