Hui Y, Yang G, Galczenski H, Figueroa D J, Austin C P, Copeland N G, Gilbert D J, Jenkins N A, Funk C D
Center for Experimental Therapeutics, Department of Pharmacology, University of Pennsylvania, Philadelphia, PA 19104, USA.
J Biol Chem. 2001 Dec 14;276(50):47489-95. doi: 10.1074/jbc.M107556200. Epub 2001 Oct 8.
Two classes of cysteinyl leukotriene receptor, CysLT(1) and CysLT(2), have been identified and pharmacologically characterized in human tissues. Although the CysLT(1) receptor mediates the proinflammatory effects of leukotrienes in human asthma, the physiological roles of CysLT(2) receptor are not defined, and a suitable mouse model would be useful in delineating function. We report here the molecular cloning and characterization of the mouse CysLT(2) receptor (mCysLT(2)R) from heart tissue. mCysLT(2)R cDNA encodes a protein of 309 amino acids, truncated at both ends compared with the human ortholog (hCysLT(2)R). The gene resides on the central region of mouse chromosome 14 and is composed of 6 exons with the entire coding region located in the last exon. Two 5'-untranslated region splice variants were identified with the short form lacking exon 3 as the predominant transcript. Although the overall expression of mCysLT(2)R is very low, the highest expression was detected in spleen, thymus, and adrenal gland by ribonuclease protection assay, and discrete sites of expression in heart were observed by in situ hybridization. Intracellular calcium mobilization in response to cysteinyl leukotriene administration was detected in human embryonic kidney 293T cells transfected with recombinant mCysLT(2)R with a rank order of potency leukotriene C(4)(LTC(4) ) = LTD(4)>>LTE(4). [(3)H]LTD(4) binding to membranes expressing mCysLT(2)R could be effectively competed by LTC(4) and LTD(4) and only partially inhibited by LTE(4) and BAYu9773. The identification of mCysLT(2)R will be useful for establishing CysLT(2)R-deficient mice and determining novel leukotriene functions.
在人体组织中已鉴定出两类半胱氨酰白三烯受体,即CysLT(1)和CysLT(2),并对其进行了药理学特性研究。虽然CysLT(1)受体介导白三烯在人类哮喘中的促炎作用,但CysLT(2)受体的生理作用尚未明确,合适的小鼠模型将有助于阐明其功能。我们在此报告从小鼠心脏组织中克隆并鉴定小鼠CysLT(2)受体(mCysLT(2)R)。mCysLT(2)R cDNA编码一个由309个氨基酸组成的蛋白质,与人类同源物(hCysLT(2)R)相比,两端均有截短。该基因位于小鼠14号染色体的中央区域,由6个外显子组成,整个编码区位于最后一个外显子中。鉴定出两种5'-非翻译区剪接变体,其中短形式缺失外显子3为主要转录本。虽然mCysLT(2)R的整体表达非常低,但通过核糖核酸酶保护试验在脾脏、胸腺和肾上腺中检测到最高表达,通过原位杂交在心脏中观察到离散的表达位点。在用重组mCysLT(2)R转染的人胚肾293T细胞中检测到对半胱氨酰白三烯给药的细胞内钙动员,其效力顺序为白三烯C(4)(LTC(4))= LTD(4)>>LTE(4)。与表达mCysLT(2)R的膜结合的[(3)H]LTD(4)可被LTC(4)和LTD(4)有效竞争,仅被LTE(4)和BAYu9773部分抑制。mCysLT(2)R的鉴定将有助于建立CysLT(2)R缺陷小鼠并确定白三烯的新功能。