Berg N B
J Cell Sci. 1978 Jun;31:199-211. doi: 10.1242/jcs.31.1.199.
The types of sulphated macromolecules produced by the exocrine pancrease were investigated. To determine whether this tissue utilized inorganic sulphate for protein production, the in-vitro behaviour of material labelled with 35S-sulphate was compared with material labelled with [3H]leucine (secretory proteins). While incubating tissue slices in the presence of cycloheximide resulted in an immediate and nearly complete inhibition of protein synthesis, a similar decrease in production of sulphated material was not observed until after 2 h of incubation in the presence of the drug. Likewise, the kinetics of pilocarpine-induced discharge of radioactive material from pancreatic slices pulse-labelled with either 3H-Leu. or 35S-sulphate was compared. During the first 90 min of stimulation sulphated macromolecules were detected in chase medium 10-15 min prior to the appearance of 3H-labelled secretory proteins. That in-vitro behaviour of sulphated material differed from radioleucine-labelled material is indicative of the fact that the pancreas utilizes inorganic sulphate for the production of macromolecules other than secretory proteins. Lipid and proteoglycan fractions were prepared from pancreatic tissue 4 h after intraperitoneal injection of radiosulphate. The recovery of a significant amount of radioactivity in both fractions deomonstrated the ability of the pancreas to use inorganic sulphate for the production of both sulphated lipids and sulphated proteoglycans. The possible function of sulphated macromolecules in pancreatic secretion is discussed.
对胰腺外分泌部产生的硫酸化大分子类型进行了研究。为了确定该组织是否利用无机硫酸盐进行蛋白质合成,将用35S-硫酸盐标记的物质与用[3H]亮氨酸标记的物质(分泌蛋白)的体外行为进行了比较。虽然在环己酰亚胺存在下孵育组织切片会导致蛋白质合成立即且几乎完全受到抑制,但直到在该药物存在下孵育2小时后,才观察到硫酸化物质的产生有类似程度的下降。同样,比较了毛果芸香碱诱导用3H-亮氨酸或35S-硫酸盐脉冲标记的胰腺切片中放射性物质释放的动力学。在刺激的最初90分钟内,在3H标记的分泌蛋白出现前10 - 15分钟,在追踪培养基中检测到了硫酸化大分子。硫酸化物质的体外行为与放射性亮氨酸标记的物质不同,这表明胰腺利用无机硫酸盐来产生除分泌蛋白之外的大分子。在腹腔注射放射性硫酸盐4小时后,从胰腺组织中制备了脂质和蛋白聚糖组分。在这两个组分中均回收了大量放射性,这证明了胰腺利用无机硫酸盐来产生硫酸化脂质和硫酸化蛋白聚糖的能力。文中还讨论了硫酸化大分子在胰腺分泌中的可能功能。