Pascall J C, Saunders J, Blakeley D M, Laurie M S, Brown K D
Department of Biochemistry, AFRC Institute of Animal Physiology and Genetics Research, Cambridge Research Station.
J Endocrinol. 1989 Jun;121(3):501-6. doi: 10.1677/joe.0.1210501.
The polypeptide mitogen, epidermal growth factor (EGF), was originally isolated from mouse submaxillary gland (SMG). In mice, these glands are sexually dimorphic; the SMG of male animals typically contains up to 400 pmol EGF/mg protein whereas EGF concentrations in the SMG of female mice are only 5-20 pmol/mg protein. When mice were castrated at 8 weeks of age, EGF mRNA levels in the SMG fell rapidly to the low levels observed in control female animals. Although the concentration of EGF in the SMG, measured by radioimmunoassay, also fell to very low levels (13.8 +/- 0.7 (S.E.M.) pmol/mg protein) in the castrated mice, the rate of decrease was considerably slower than that of the mRNA. In contrast to the loss of EGF and EGF mRNA from mice following castration, ovariectomy led to a rise in EGF mRNA levels in SMG, with a maximal increase (approximately 100-fold) 4-6 weeks after ovariectomy. Concentrations of EGF in the SMG also rose markedly in the ovariectomized animals, from a control value of 5.4 +/- 0.8 to 34.7 +/- 7.9 pmol/mg protein at 6 weeks. In mice, the kidney displays the second highest level of EGF gene expression. However, in contrast to the effects on SMG, kidney EGF mRNA was not affected by either castration or ovariectomy. These results provide further evidence for the tissue-specific control of EGF gene expression in response to steroid hormones.
多肽促有丝分裂原——表皮生长因子(EGF)最初是从小鼠颌下腺(SMG)中分离出来的。在小鼠中,这些腺体具有性别二态性;雄性动物的颌下腺通常含有高达400皮摩尔EGF/毫克蛋白质,而雌性小鼠颌下腺中的EGF浓度仅为5 - 20皮摩尔/毫克蛋白质。当小鼠在8周龄时被阉割,颌下腺中的EGF mRNA水平迅速下降至对照雌性动物中观察到的低水平。尽管通过放射免疫测定法测量,阉割小鼠颌下腺中EGF的浓度也降至非常低的水平(13.8±0.7(标准误)皮摩尔/毫克蛋白质),但其下降速度明显慢于mRNA。与阉割后小鼠体内EGF和EGF mRNA的丢失相反,卵巢切除导致颌下腺中EGF mRNA水平升高,在卵巢切除后4 - 6周达到最大增加(约100倍)。卵巢切除动物颌下腺中EGF的浓度也显著升高,从对照值5.4±0.8升至6周时的34.7±7.9皮摩尔/毫克蛋白质。在小鼠中,肾脏中EGF基因表达水平位居第二。然而,与对颌下腺的影响相反,肾脏中的EGF mRNA不受阉割或卵巢切除的影响。这些结果为类固醇激素对EGF基因表达的组织特异性调控提供了进一步的证据。