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人生长激素C末端二硫键的作用。

The role of human growth hormone's C-terminal disulfide bridge.

作者信息

Junnila R K, Wu Z, Strasburger C J

机构信息

Department of Clinical Endocrinology, Campus Charité Mitte, Charité Universitaetsmedizin, Berlin, Germany.

出版信息

Growth Horm IGF Res. 2013 Jun;23(3):62-7. doi: 10.1016/j.ghir.2013.02.002. Epub 2013 Mar 9.

Abstract

OBJECTIVE

Human growth hormone (hGH), as well as the other members of the same polypeptide hormone family, have a four-helix bundle structure linked by two disulfide bridges, C53-C165 and C182-C189 in hGH. The C-terminal disulfide bridge of growth hormone is evolutionally conserved but its role is unknown. Our aim was to determine its importance for GH structure and/or function.

DESIGN

We disrupted the highly conserved C-terminal disulfide bridge of hGH by substituting one or both of its cysteines by alanines. Mutant and wild type hGH genes were expressed in human embryonic kidney (HEK)-293 cells and the hGH analogs were characterized in vitro regarding biological activity, stability and binding to GH receptor (GHR) as well as GH binding protein (GHBP).

RESULTS

Disrupting the hGH C-terminal disulfide bridge significantly reduces binding affinity to GHR and GHBP. If one of the cysteines is removed, the stability of the molecule is reduced but this feature is reversed when both cysteines are absent. However, despite decreased binding affinity and stability, biological activity is only modestly decreased when the disulfide bridge is removed.

CONCLUSIONS

Our study reveals the importance of the C-terminal disulfide bridge of GH for receptor binding and the detrimental effect of its unpaired cysteines on stability as well as, to a lesser extent, biological activity. This improved knowledge of structure-function relationships helps better understand the biology of GH and related molecules. This could have an impact on diagnosis and treatment of patients with growth disorders.

摘要

目的

人类生长激素(hGH)以及同一多肽激素家族的其他成员具有由两个二硫键连接的四螺旋束结构,在hGH中为C53 - C165和C182 - C189。生长激素的C末端二硫键在进化上是保守的,但其作用尚不清楚。我们的目的是确定其对生长激素结构和/或功能的重要性。

设计

我们通过将其一个或两个半胱氨酸替换为丙氨酸来破坏hGH高度保守的C末端二硫键。突变型和野生型hGH基因在人胚肾(HEK)-293细胞中表达,并且对hGH类似物在体外进行生物学活性、稳定性以及与生长激素受体(GHR)和生长激素结合蛋白(GHBP)结合方面的特性鉴定。

结果

破坏hGH的C末端二硫键会显著降低其与GHR和GHBP的结合亲和力。如果去除其中一个半胱氨酸,分子的稳定性会降低,但当两个半胱氨酸都不存在时,这一特性会逆转。然而,尽管结合亲和力和稳定性降低,但去除二硫键时生物学活性仅适度降低。

结论

我们的研究揭示了生长激素C末端二硫键对受体结合的重要性,以及其未配对半胱氨酸对稳定性的有害影响,在较小程度上也影响生物学活性。对结构 - 功能关系的这一深入了解有助于更好地理解生长激素及相关分子的生物学特性。这可能会对生长障碍患者的诊断和治疗产生影响。

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