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人胎盘生长激素变体对大鼠淋巴瘤Nb2细胞具有促有丝分裂作用。

The human placental growth hormone variant is mitogenic for rat lymphoma Nb2 cells.

作者信息

Nickel B E, Kardami E, Cattini P A

机构信息

Department of Physiology, University of Manitoba, Winnipeg, Canada.

出版信息

Endocrinology. 1990 Feb;126(2):971-6. doi: 10.1210/endo-126-2-971.

Abstract

Although there is evidence that human (h) placental GH variant (hGH-V) possesses a growth-promoting function, lactogenic activity by the hormone has not been demonstrated. Rat anterior pituitary tumor (GC) cells stably transfected with the hGH-V gene (GC [hGH-V] cells) synthesize and secrete hGH-V. This hormone shares considerable structural similarity with pituitary growth hormone (hGH-N) and chorionic somatomammotropin (hCS) at the nucleotide (greater than 90%) and amino acid (greater than 80%) levels. As expected, both hGH-N and hCS antibodies detect hGH-V by immunoblotting. However, hGH-V, but not hGH-N or hCS, cross-reacts with human or rat pituitary prolactin (PRL) antibodies. These data indicate that structural features shared by hGH-V and pituitary PRL are not present in hGH-N or hCS. Comparison of amino acid sequences implicates two regions that may account for a common epitope between hGH-V and hPRL, and structural difference from hGH-N and hCS. The possible lactogenic activity by hGH-V was assessed in a rat lymphoma Nb2 cell bioassay. Conditioned medium from GC[hGH-V] cells permitted growth of lactogen-dependent Nb2 lymphoma cells in culture. This activity was blocked by antibodies raised to rat PRL but not hPRL or hGH-N. Comparison of the hGH-V amino acid sequence with those from 14 other lactogenic hormones, including hPRL, hCS and hGH-N, reveals 6 conserved amino acids. These data indicate a lactogenic as well as growth-promoting function for the secreted hGH-V protein in vivo.

摘要

虽然有证据表明人胎盘生长激素变体(hGH-V)具有促进生长的功能,但尚未证实该激素具有催乳活性。稳定转染hGH-V基因的大鼠垂体前叶肿瘤(GC)细胞(GC [hGH-V]细胞)合成并分泌hGH-V。该激素在核苷酸(大于90%)和氨基酸(大于80%)水平上与垂体生长激素(hGH-N)和绒毛膜促生长催乳素(hCS)具有相当大的结构相似性。正如预期的那样,hGH-N和hCS抗体均可通过免疫印迹检测到hGH-V。然而,hGH-V与人类或大鼠垂体催乳素(PRL)抗体发生交叉反应,而hGH-N或hCS则不会。这些数据表明,hGH-V与垂体PRL共有的结构特征在hGH-N或hCS中不存在。氨基酸序列比较表明,有两个区域可能解释了hGH-V和hPRL之间的共同表位,以及与hGH-N和hCS的结构差异。通过大鼠淋巴瘤Nb2细胞生物测定评估了hGH-V可能的催乳活性。来自GC[hGH-V]细胞的条件培养基可使培养中的催乳素依赖性Nb2淋巴瘤细胞生长。这种活性被针对大鼠PRL而非hPRL或hGH-N产生的抗体所阻断。将hGH-V氨基酸序列与包括hPRL、hCS和hGH-N在内的其他14种催乳激素的氨基酸序列进行比较,发现有6个保守氨基酸。这些数据表明,体内分泌的hGH-V蛋白具有催乳以及促进生长的功能。

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