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甲状旁腺激素片段的蛋白酶抗性变体在体内和体外对大鼠骨骼组织中肌酸激酶活性的刺激作用。

Stimulation of creatine kinase activity in rat skeletal tissue in vivo and in vitro by protease-resistant variants of parathyroid hormone fragments.

作者信息

Sömjen D, Vargas V, Waisman A, Wingender E, Tegge W, Kaye A M

机构信息

Tel Aviv Medical Center, Sackler Faculty of Medicine, Tel Aviv University, Israel.

出版信息

Biochem J. 1995 Jul 1;309 ( Pt 1)(Pt 1):85-90. doi: 10.1042/bj3090085.

Abstract

We have reported that mid-region fragments of human parathyroid hormone (hPTH), exemplified by hPTH-(28-48), stimulated [3H]thymidine incorporation into DNA and increased the specific activity of the brain-type isoenzyme of creatine kinase (CK) in both skeletal-derived cell cultures (ROS 17/2.8 cells) and immature rat epiphyseal cartilage and diaphyseal bone, without stimulating cyclic AMP synthesis which is a prerequisite for bone resorption. In the present study, substitution of amino acids in hPTH-(28-48), which resulted in increased resistance to proteolysis, produced variants that stimulated skeletal systems at two orders of magnitude lower concentration than the wild-type fragment. We modified hPTH-(28-48) at Leu-37 by replacement with Met, Thr or Val. Under conditions in which 20% of the native hPTH-(28-48) resisted proteolysis by cathepsin D for 6 h, approx. 40% of the L37V mutant and 70% of the L37T mutant remained intact. Substitution of Met for Phe-34 in addition to Thr for Leu-37, or the substitution of Met for Phe-34 alone, produced 100%-resistant fragments. These variants at residue 34 caused maximal stimulation of CK in ROS 17/2.8 cells at 0.24 nM compared with 24 nM for hPTH-(28-48). The double mutant stimulated CK activity significantly in immature rats, at a minimum dose of 12.5 ng/rat, and caused maximal stimulation at 125 ng/rat, a 10-fold lower dose than for hPTH-(28-48). The effect of the double mutant lasted up to 24 h which differs from the stimulation by hPTH-(28-48) in which CK specific activity returns to the control level at 24 h. This same dose also significantly stimulated CK activity in gonadectomized rats. These results show the advantage of using protease-resistant mid-region variants of hPTH-(28-48) to stimulate bone cells, in terms of lower doses and longer duration of effectiveness, both in vitro and in vivo.

摘要

我们曾报道,人甲状旁腺激素(hPTH)的中间区域片段,以hPTH-(28 - 48)为例,在骨骼来源的细胞培养物(ROS 17/2.8细胞)以及未成熟大鼠的骺软骨和骨干骨中,刺激了[3H]胸腺嘧啶核苷掺入DNA,并增加了肌酸激酶(CK)脑型同工酶的比活性,同时未刺激作为骨吸收前提条件的环磷酸腺苷合成。在本研究中,对hPTH-(28 - 48)中的氨基酸进行替换,导致其对蛋白水解的抗性增加,产生了比野生型片段在低两个数量级浓度下就能刺激骨骼系统的变体。我们通过用Met、Thr或Val替换Leu - 37对hPTH-(28 - 48)进行修饰。在20%的天然hPTH-(28 - 48)在组织蛋白酶D作用下6小时仍能抵抗蛋白水解的条件下,约40%的L37V突变体和70%的L37T突变体保持完整。除了用Thr替换Leu - 37外,还用Met替换Phe - 34,或者单独用Met替换Phe - 34,产生了100%抗性的片段。这些34位残基处的变体在0.24 nM时对ROS 17/2.8细胞中的CK产生最大刺激,而hPTH-(28 - 48)则为24 nM。该双突变体在未成熟大鼠中以最低剂量12.5 ng/大鼠显著刺激CK活性,并在125 ng/大鼠时产生最大刺激,此剂量比hPTH-(28 - 48)低10倍。双突变体的作用持续长达24小时,这与hPTH-(28 - 48)的刺激作用不同,hPTH-(28 - 48)作用下CK比活性在24小时时恢复到对照水平。相同剂量在去势大鼠中也显著刺激了CK活性。这些结果表明,使用hPTH-(28 - 48)的蛋白酶抗性中间区域变体来刺激骨细胞,在体外和体内,在较低剂量和更长的有效持续时间方面具有优势。

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