Suppr超能文献

20千道尔顿(kDa)的人生长激素(hGH)在与细胞表面hGH受体形成复合物以及与人体血浆中循环的hGH结合蛋白方面,与22-kDa的hGH有所不同。

The 20-kilodalton (kDa) human growth hormone (hGH) differs from the 22-kDa hGH in the complex formation with cell surface hGH receptor and hGH-binding protein circulating in human plasma.

作者信息

Wada M, Uchida H, Ikeda M, Tsunekawa B, Naito N, Banba S, Tanaka E, Hashimoto Y, Honjo M

机构信息

Life Science Laboratories, Mitsui Chemicals, Inc., Chiba, Japan.

出版信息

Mol Endocrinol. 1998 Jan;12(1):146-56. doi: 10.1210/mend.12.1.0054.

Abstract

In spite of recent advance in understanding of the stoichiometry of 22-kDa human GH (22K-hGH) with cell surface hGH receptor (hGHR) and hGH-binding protein (hGH-BP) circulating in human plasma, that of 20-kDa hGH (20K-hGH) is poorly understood. To clarify this, mouse pro-B Ba/F3 cells stably expressing the full-length hGHR (Ba/F3-hGHR) and both recombinant and native hGH-BP were used in this study. Cell proliferation assay revealed that the two hGH isoforms increased Ba/F3-hGHR cells to the same extent in a dose-dependent manner at 0.1 pM-10 nM. However, the self-inhibition observed in 20K-hGH at 5 microM was significantly less than that in 22K-hGH. Furthermore, addition of 1 and 10 nM recombinant hGH-BP caused a slight inhibition in 20K-hGH, but a drastic inhibition in 22K-hGH. Gel filtration chromatography of mixtures of 20K-hGH with recombinant hGH-BP clearly demonstrated that 20K-hGH formed a 1:2 (hGH:hGH-BP) complex efficiently but no detectable 1:1 complex in any conditions. Supporting data were also obtained with native hGH-BP. Computer-aided homology modeling of 20K-hGH has provided speculative data that the conformational change caused by deletion of 15 residues may occur only in the loop between helix 1 and helix 2, resulting in the reduction of its site 1 affinity. In conclusion, 20K-hGH possesses a unique property for forming a 1:2 complex to the same extent as 22K-hGH but has difficulty in forming a 1:1 complex, which might be attributed to the conformational change restricted to its site 1 region.

摘要

尽管最近在理解22 kDa人生长激素(22K-hGH)与细胞表面人生长激素受体(hGHR)以及人血浆中循环的人生长激素结合蛋白(hGH-BP)的化学计量方面取得了进展,但对20 kDa人生长激素(20K-hGH)的了解却很少。为了阐明这一点,本研究使用了稳定表达全长hGHR的小鼠前B细胞Ba/F3(Ba/F3-hGHR)以及重组和天然hGH-BP。细胞增殖试验表明,在0.1 pM至10 nM的浓度范围内,两种hGH同工型以剂量依赖的方式使Ba/F3-hGHR细胞增加到相同程度。然而,在5 microM时观察到的20K-hGH的自我抑制明显小于22K-hGH。此外,添加1和10 nM重组hGH-BP对20K-hGH有轻微抑制作用,但对22K-hGH有显著抑制作用。20K-hGH与重组hGH-BP混合物的凝胶过滤色谱法清楚地表明,20K-hGH有效地形成了1:2(hGH:hGH-BP)复合物,但在任何条件下都未检测到1:1复合物。使用天然hGH-BP也获得了支持数据。20K-hGH的计算机辅助同源建模提供了推测数据,即由15个残基缺失引起的构象变化可能仅发生在螺旋1和螺旋2之间的环中,导致其位点1亲和力降低。总之,20K-hGH具有与22K-hGH相同程度形成1:2复合物的独特特性,但难以形成1:1复合物,这可能归因于仅限于其位点1区域的构象变化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验