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卵巢切除和17β-雌二醇替代对鲶鱼(印度囊鳃鲶)脑酪氨酸羟化酶的影响:体内活性和动力学参数的变化

Effects of ovariectomy and oestradiol-17beta replacement on brain tyrosine hydroxylase in the catfish Heteropneustes fossilis: changes in in vivo activity and kinetic parameters.

作者信息

Chaube R, Joy K P

机构信息

Department of Zoology, Banaras Hindu University, Varanasi 221005, India.

出版信息

J Endocrinol. 2002 Nov;175(2):329-42. doi: 10.1677/joe.0.1750329.

Abstract

In Heteropneustes fossilis, ovariectomy inhibited in vivo brain (hypothalamus-pituitary, telencephalon and medulla oblongata) tyrosine hydroxylase (TH) activity with significant effects in weeks 2, 3, 4 and 5 of the gonadal resting phase and in weeks 3, 4 and 5 of the prespawning phase (P<0.05, Tukey's test). Oestradiol-17beta (OE(2)) replacement in 3-week ovariectomised fish produced biphasic responses in both seasons; the low dosages of 0.05 and 0.5 micro g/g body weight (BW) elevated TH activity, whereas the high dosages of 1.0 and 2.0 micro g/g BW decreased it. The magnitude of the inhibition was higher in the resting phase than in the prespawning phase. The inhibitory effect of ovariectomy may be produced by elevating the apparent K(m) values (decreased affinity) of the enzyme for both L-tyrosine (substrate) and dimethyltetrahydropteridine (cofactor) and consequently decreasing the V(max). Significant changes (P<0.05) in both these parameters were noticed but showed minor differences with regard to the length of ovariectomy, season or brain regions. The biphasic effects of OE(2) replacement on TH activity seemed to be produced by differential effects on apparent K(m) and V(max). The stimulatory effect of the low dosages of OE(2) coincides with a decrease in the apparent K(m) values (increased affinity) for both substrate and cofactor and an increase in the V(max) of the enzyme. The inhibitory effect of the high dosages of OE(2) correlated with an increase in the apparent K(m) values (decreased affinity) for both substrate and cofactor, and a decrease in the V(max) compared with the lower dosage groups. The results strongly suggested that OE(2) can modulate brain catecholaminergic activity at the level of tyrosine hydroxylation which, in turn, may alter gonadotrophin secretion. OE(2) may elicit biphasic effects by differentially altering the enzyme affinity towards the substrate and cofactor.

摘要

在印度鲶鱼中,卵巢切除抑制了体内脑(下丘脑 - 垂体、端脑和延髓)酪氨酸羟化酶(TH)的活性,在性腺静止期的第2、3、4和5周以及产卵前期的第3、4和5周有显著影响(P<0.05,Tukey检验)。对3周龄卵巢切除的鱼补充17β - 雌二醇(E2)在两个季节均产生双相反应;低剂量0.05和0.5μg/g体重(BW)可提高TH活性,而高剂量1.0和2.0μg/g BW则使其降低。静止期的抑制幅度高于产卵前期。卵巢切除的抑制作用可能是通过提高该酶对L - 酪氨酸(底物)和二甲基四氢蝶呤(辅因子)的表观K(m)值(亲和力降低),从而降低V(max)产生的。这两个参数均有显著变化(P<0.05),但在卵巢切除时间、季节或脑区方面差异较小。E2补充对TH活性的双相作用似乎是由对表观K(m)和V(max)的不同影响产生的。低剂量E2的刺激作用与底物和辅因子的表观K(m)值降低(亲和力增加)以及酶的V(max)增加相吻合。高剂量E2的抑制作用与底物和辅因子的表观K(m)值增加(亲和力降低)以及与低剂量组相比V(max)降低相关。结果强烈表明,E2可在酪氨酸羟化水平调节脑儿茶酚胺能活性,进而可能改变促性腺激素的分泌。E2可能通过差异改变酶对底物和辅因子的亲和力而产生双相作用。

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