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1.
核受体及核受体病   总被引:1,自引:0,他引:1  
核受体为一类配体依赖性的转录调节蛋白,它们在一级结构及基因结构上具有同源性,属于核受体家族或甾体激素受体超家族。核受体异常或核受体病将导致靶细胞对相应激素的抵抗,在临床上产生激素不敏感或抵抗症。近年来,核受体病的分子缺陷及突变本质已得到初步揭示。  相似文献   

2.
陈健  周度金 《生命的化学》2001,21(6):487-489
脂溶性激素对生物的生长、发育、分化、器官的生理活动等方面有重要的影响 ,这类激素能直接穿膜进入胞内 ,通过与胞质或核内的特异受体结合而调节基因的表达。 1 988年 ,Giguere等[1] 发现一类新的核受体 (hu manestrogen receptorrelatedreceptor ,hERR) ,由于发现之初未鉴定到其相应的配体 ,称为孤儿受体。核受体大致可分 4个家族 :类固醇类受体、RXR异二聚类受体、同二聚类孤儿受体和单体类孤儿受体 ,绝大多数孤儿受体属于第三、四类。近年陆续鉴定到一些孤儿受体的配体 ,说明孤儿受…  相似文献   

3.
LDL受体对清道夫受体活性的影响   总被引:1,自引:0,他引:1  
应用经PMA诱导衍生的THP-1巨噬细胞为模型,以单克隆抗体C7B封闭oxLDL上的LDL受体结合位点,结果发现,正常细胞在摄取oxLDL时LDL受体与清道夫受体起协同作用;但C7B作用于蓄积了脂质的THP-1巨噬细胞时,对细胞脂质蓄积程度无明显影响,清道夫受体活性不但不降低反而有所升高,说明由于脂质蓄积LDL受体的作用减弱。  相似文献   

4.
神经系统褪黑激素受体   总被引:7,自引:0,他引:7  
  相似文献   

5.
Wang H  Lu Y  Chen HZ 《生理科学进展》2003,34(2):156-158
m5受体是M受体家族一个新成员,与其它亚型相比,由于缺乏高选择性配体和标记条件以及富含m5受体的组织来源,目前对其分子结构、结合特性、组织分布、生理功能等知之甚少。随着免疫沉淀、原位杂交和药理学标记方法的发展,现已证实m5受体主要分布于大脑皮质最外层,海马齿状回、CAl、CA2区,嗅结节,横核以及外周血淋巴细胞、单核细胞、睫状肌等部位,提示m5受体在调节大脑和外周组织胆碱能神经活动方面具有独特而重要的作用,有可能成为治疗帕金森病、阿尔采末病、局灶性脑缺血等疾病新的药物靶点。  相似文献   

6.
浅谈受体     
受体是近代生物学和药理学研究的重要课题之一,越来越受到各国科学家们的重视。由于新技术、新方法的使用,受体研究已在受体分子的分离纯化,受体基因的克隆化、受体蛋白的分子结构、受体作用的机理等许多方面取得了突破性进展。一、受体的概念早在1878年,J·N·Langley就提出了受体概念,他设想在神经末梢或腺体上存在某种特殊物质。1906年,他又进一步将这种物质叫做接受物质。1913年,Paul Ehrlich把该接受物质叫做受体。1933年,clark A·J发现具有结构特异性的药物,以很小的剂量  相似文献   

7.
褪黑素受体   总被引:5,自引:0,他引:5  
褪黑素是松果体分泌的主要激素,其功能活动通过特异的G蛋白耦联受体介导,本文综述褪黑素受体 分布、药理学特性,受体的克隆及受体基因结构特点。  相似文献   

8.
降钙素基因相关肽家族是一类多功能的激素家族 ,参与人体的多种生物学功能 ,与多种疾病有关。降钙素基因相关肽受体包括降钙素受体 (CTR)和降钙素受体样受体 (CRLR) ,CTR可以独自与降钙素结合 ,而CRLR必须与一组称作受体活性修饰蛋白 (RAMPs)的蛋白质共同作用才能发挥生物学功能。综述CTR的研究概况及CRLR与RAMPs相互作用的机制和表达调控 ,以期为人们设计新型药物提供参考。  相似文献   

9.
Dai SM  Shan ZZ  Su DF 《生理科学进展》1997,28(3):283-285
本文简述了人们对咪唑啉(I)受体及其内源性配体的认识过程。I受体主要分布于脑内,其作用广泛,以调节交感神经张力为主。I受体可分I1受体和I2受体两型。I1和I2受体的氨基酸序列和第二信使尚不清楚。胍基丁胺是I受体的内源性配体,分布较广泛,有多种生物学作用。第二代中枢降压药莫索尼定、雷美尼定对I1受体的亲和力较高,中枢抑制等副作用较弱。  相似文献   

10.
采用相对定量反转录多聚酶链式反应(RT-PCR)的方法,以β-actin为内标,测定绍鸭排卵前卵泡F1、F3、F5及大白卵泡(LWF)颗粒层与膜层中GH受体(GHR)、IGF-I型受体(IGF-IR)和FSH受体(FSHR)、LH受体(LHR)mRNA表达水平,以分析生长轴和生殖轴激素对绍鸭卵泡发育的协同调节作用。结果表明:在所测定的各级卵泡中,GHR mRNA在膜层的表达水平均显著高于颗粒层,膜层中大白卵泡表达量最高,而颗粒层中GHR mRNA水平在各级卵泡之间没有明显差异;相反,IGF-IR mRNA在同级卵泡颗粒层的表达水平显著高于膜层,颗粒层和膜层中IGF-IR mRNA表达在各级卵泡之间的差异均不显著,只是大白卵泡的膜层与其他等级卵泡的膜层相比,IGF-IR的表达量呈现较高的趋势;FSHR mRNA表达的变化趋势类似于IGE-IR,同级卵泡颗粒层中的表达量高于膜层;LMR mRNA在各级卵泡膜层中表达没有明显差异,而颗粒层中IMR mRNA随着卵泡发育成熟逐级显著增加,且F5和LWF卵泡膜层的IMR mRNA显著高于颗粒层,与GHR mRNA的表达相似。结果提示,GH和IGF-I调节卵巢功能的优势作用位点和机制不尽相同;GHR和LHR协同表达与IGF-IR和FSHR协同表达可能对卵泡发育起到精细的调节作用;而IMR在卵泡颗粒层中表达的逐级显著增加可能与卵泡等级的建立和排卵有关。  相似文献   

11.
CD2 (E receptor, LFA-3 receptor) and E2 molecules (Bernard, 1988) on human T lymphocytes, CD58 (LFA-3, lymphocyte function associated antigen 3) on human erythrocytes and S14,S42,S110-220 molecules (Bernard, 1987) of sheep erythrocytes are involved in rosette formation of human T lymphocytes with human or sheep erythrocytes. Rosette formation of human and macaque pan-T lymphocytes with tree shrew (Tupaia belangeri) red blood cells (TRBC) (TRBC rosette) has shown different physicochemical properties from that of rosette formation with sheep red blood cells (E rosette) (Ben, 1985). CD2, CD3/TCR complex, CD5, CD6, and CD7 are not involved in TRBC rosette formation (Zheng, 1990). In order to know whether E2, LFA-3,S14,S42 and S110-220 molecules are involved in TRBC rosette formation or human and macaque T lymphocytes, rosette inhibition and antigenic modulation or co-modulation were performed with relevant monoclonal antibodies (McAbs), and hemolytic assay and slide agglutination were also conducted. TRBC rosette formation of human and rhesus monkey PBL was not blocked by E2 McAb (inhibition rate 2.8% and 2.1%, respectively). In contrast, human E rosette formation was obviously blocked at inhibition rate of 49.8% and macaque E rosette formation was slightly inhibited (13.3%). The modulation or co-modulation of E2 molecule with E2 McAb did not affect human TRBC rosette formation. Similar results were shown in rosette formation inhibition of Jurkat cells.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

12.
参与人自体花结(A花结)形成的分子(如CD2/LFA-3),与免疫细胞的粘附和激活有关。我们曾发现,人和猴淋巴细胞表面的树鼩红细胞(TRBC)受体不同于绵羊红细胞(SRBC)受体(CD2),可能是一种新的白细胞分化抗原。花结试验表明,树鼩的外周血淋巴细胞(TPBL)和胸腺细胞都能形成A花结,结花率分别为20.9%和11.1%;而绵羊红细胞花结(E花结)形成率分别是20.9%和1.1%。以四种单克隆抗体(McAb)(Leu 5,0-275,AICD2.1和E2 McAb)进行树鼩A花结和E花结的抑制与抗原调变试验,结果表明,这些抗体对树鼩的A花结都没有明显的抑制或调变作用,但对E花结的抑制及调变作用明显。说明TPBL表面的TRBC受体不同于SRBC受体,与CD2/LFA-3及E2分子无关。因此,TPBL的A花结与E花结形成机制不同。  相似文献   

13.
Human T lymphocytes express either alpha/beta- or gamma/delta-TCR in association with the CD3 complex. We have isolated a mAb, delta TCS1, that immunoprecipitated the gamma/delta-TCR heterodimer from cell lysates of Peer and Molt-13 leukemia cell lines. After dissociation of the gamma- and delta-chains of TCR by treatment with SDS, delta TCS1 specifically immunoprecipitated the delta-chain. This antibody bound to the surface of other gamma/delta-positive T cell lines and clones and was able to stimulate the proliferation of a minor cell population (0.9 to 4.0%) of resting human PBL. Upon binding to gamma/delta-TCR-bearing Molt-13 cells and PBL, delta TCS1 elicited a fura-2 Caa+ signal indicating that the gamma/delta-receptor is functionally similar to the alpha/beta-heterodimer. These data indicate that the delta TCS1 antibody recognizes an epitope on TCR delta-chain and its mitogenic activity should be useful in characterizing the functional properties of human gamma/delta-positive T lymphocytes.  相似文献   

14.
We examined the influence of donor T lymphocytes on human peripheral blood leukocytes (PBL) engraftment into severe combined immune deficient (SCID) mice. Mice were injected with unfractionated or subset-depleted human PBL, and treated at various times with OKT3, a cytotoxic monoclonal antibody against human CD3(+) T lymphocytes. PBL engraftment, high levels of human Ig, and high incidence of lymphoproliferative disease (lpd) were found in mice transplanted with unfractionated PBL and CD8- or CD14-depleted PBL, and in mice treated with OKT3 at distance from PBL transfer. Animals xenografted with CD3- or CD4-depleted PBL, or treated at transplantation time with OKT3, had very low levels of human Ig and did not develop lpd. PBL engraftment was minimal or absent in these animals, as determined by immunohistochemistry, dot-blot, and RT-PCR analyses. These results demonstrate that the presence of donor CD4(+) T lymphocytes at transplantation time is necessary for observing human PBL engraftment into SCID mice, an essential condition for human Ig production and lpd development.  相似文献   

15.
Sheep erythrocytes (E) were treated with papain or neuraminidase to evaluate what effect these enzymes would have on the E rosette test for human T lymphocytes. Few or no rosettes were detected with sheep erythrocytes treated with papain (EP). Sensitization of EP with rabbit antibody and mouse complement resulted in a rosette indicator (EPAC) which could be used to detect peripheral blood complement receptor lymphocytes (CRL) and thymocyte CRL without having to perform the rosette assay at 37 °C. Neuraminidase treatment of E (EN) enabled the detection of approximately 20% more rosette-forming cells (RFC) in human peripheral blood lymphocyte (PBL) suspensions compared to untreated E. Rosette studies on a patient with severe combined immunodeficiency disease and on human lymphoblastoid cell lines showed that the additional rosettes detected with EN were T lymphocytes.  相似文献   

16.
Natural killer (NK) cells in peripheral blood lymphocytes (PBL) and bone marrow (BM) cells of the rhesus monkey were detected by their functional activity against K562 cells. Animals could be grouped into "high" or "low" NK responders, a trait found to be consistent over a period of 2 years. NK active cells in PBL were in the nonadherent population, with the majority bearing Fc receptors and a further subdivision of these into CR+ (complement receptor) and CR- NK cells. Of 10 monoclonal antibodies directed against different epitopes of human lymphocytes, OKT11, OKT10, and Leu 11 showed reactivity with rhesus NK cells. Only OKT10 was reactive with the effector site of the cell, as shown by its capability to block NK function. Of the Leu 11 monoclonal antibodies (a, b, c), Leu 11c was nonreactive while Leu 11a and Leu 11b were shown by immunofluorescence to bind to 7 to 21% of PBL; Leu 11b was also cytotoxic to the NK cells. Leu 11b did not prevent binding of Leu 11a to PBL, suggesting reactivity of these antibodies with different epitopes. Percoll fractionation of PBL and BM revealed a greater enrichment of NK activity with BM; also, with PBL peak NK activity occurred in fractions 4 and 5 while this occurred in fraction 5 with BM. Although Percoll PBL fractions contained a higher percentage of Leu 11b cells, the NK activity of the BM fractions was proportionately greater. The majority of PBL cells with NK activity were FcR+ while significant activity could be attributed to FcR- cells of BM, in both the unseparated and Percoll fractions of each tissue. The data suggest NK active cells of BM may be distinct from those found in PBL.  相似文献   

17.
Proteolytic digestion of the human T lymphoblastoid cell line (Molt-4) and of peripheral blood lymphocytes by trypsin, chymotrypsin, and pronase results in a progressive, time-and dose-dependent diminution of T lymphocyte-sheep red bloock cell (SRBC) rosette formation, whereas thrombin, plasmin, collagenase, DNAse, and phospholipase have not effect. Complete abrogation of SRBC binding is achieved when lymphocytes (1 x 108/ml) are incubated with either trypsin or chymotrypsin at 10 mug/ml for 30 min, and greater than 50% abrogation is observed between 3 to 10 min. Preincubation of SRBC with the 10 min and 20 min lymphocyte digest supernatants inhibited their subsequent binding by normal T lymphocytes by as much as 64%. Thirty-minute digests were less inhibitory. Equivalent digests from several human B lumphoblastoid cell lines and from a non-rosetting clone of Molt-4 cells were not inhibitory. Polyacrylamide gel electrophoresis followed by elution of serial gel slices revealed four distinct inhibitory bands (I-IV) in the 20-min digest supernatant whereas only bands I-III and band IV were present in the 10-min and 30-min digest supernatants, respectively, suggesting progressive proteolysis of a distinct receptor. These experiments indicate that the binding of SRBC by human T lymphocytes represents a receptor-ligand interaction rather than a nonspecific electrical charge phe nomenon and that the receptor is a discrete molecular species which can be isolated from the surface of T but not B lymphocytes by limited enzymatic proteolysis.  相似文献   

18.
Spontaneous rosette formation in humans is restricted to a subpopulation of the circulating T cells. We have previously shown that the interaction between lymphocytes and autologous red blood cells (auto-RBC) is not mediated by a self-recognition mechanism, since allogeneic (allo-) RBC bind to T cells through the same receptors. In this work, we have extended these observations to thymocytes. Using a mixed-rosette assay in which one type of erythrocyte was identified by FITC labeling, we have shown that almost all the thymocytes which attached auto-RBC could also fix allo-RBC. However, as for the peripheral blood lymphocytes (PBL), binding of human RBC to thymocytes occurred with varying affinities according to the erythrocyte's origin. In order to further study the specificity of the erythrocyte to lymphocyte binding in rosette formation, PBL were mixed with auto-RBC and erythrocytes of xenogeneic (xeno-) origin. Although very disparate incidences of rosettes were found according to the species from which the RBC were derived, most of the autorosetting lymphocytes also had receptors for xeno-RBC. In addition, preincubation of PBL with monoclonal antibody OKT11A (directed against the sheep RBC receptors on T cells) completely abrogated rosette formation with all the erythrocytes tested (human auto- and allo-, sheep, pig, and rabbit) except mouse RBC. Taken together these data strongly suggest that human auto- or allo-, as well as sheep or some other xeno-RBC, bind to T lymphocytes by a single receptor and that the combining sites are expressed with different densities or varying affinities depending upon the RBC's origin. Therefore, spontaneous autorosettes may represent T lymphocytes having high-affinity receptors for sheep RBC.  相似文献   

19.
The percentages of rhesus monkey blood lymphocytes (PBL) reactive with OKT4 and OKT8 antibodies and the OKT4OKT8 ratio showed significant correlations with the log of the immunoglobulin plaque-forming cell (PFC) response after stimulation with pokeweed mitogen (PWM). These correlations suggested that monkey OKT4+ cells function as “helper” cells and OKT8+ cells function as “suppressor” cells for the PFC response. This was confirmed by separation and study of enriched T- and B-cell subpopulations. OKT8-depleted (OKT4+) and OKT4-depleted (OKT8+) cells were obtained by treatment of purified T cells with antibody and complement. OKT4+ cells augmented the PWM-induced B-cell differentiation into PFC but OKT8+ cells did not. OKT8+ cells suppressed the PFC response by mixtures of B cells and OKT4+ cells. OKT8 antibodies also detected a suppressive cell subset in African green monkeys since the percentage of OKT8+ cells showed a negative correlation with the log PFC response. OKT4 antibodies failed to bind to African green monkey PBL.  相似文献   

20.
Previous studies have shown that the purified T lymphocyte glycoprotein, cluster differentiation 2 (CD2) (also known as T11, lymphocyte function-associated antigen (LFA)-2, and the erythrocyte (E) rosette receptor) interacts with the LFA-3 molecule on human E. We have examined the interaction of the purified CD2 molecule with the T11 target structure (T11TS) molecule on sheep E, and compared the two interactions. Purified, 125I-labeled CD2 bound to sheep E and the binding was inhibited by anti-T11TS monoclonal antibody (mAb). Reciprocally, the binding of T11TS mAb to sheep E was inhibited by pretreatment of sheep E with purified CD2. High concentrations of purified CD2 aggregated sheep E, possibly by inserting into the membrane, and the aggregation was inhibited by T11TS mAb. The affinity and number of binding sites for purified CD2 on sheep and human E was found to be similar, with Ka of 9 X 10(7)/M and 6 X 10(7)/M and 9800 and 8300 CD2 binding sites/E, respectively. Thus, the human T lymphocyte CD2 molecule is a receptor that cross-reacts between LFA-3 on human E and T11TS on sheep E, suggesting that LFA-3 and T11TS are functionally homologous ligands. As measured by saturation mAb binding, there are 8100 and 3900 ligand molecules/sheep and human E, respectively. Human and sheep E have surface areas of 145 and 54 micron 2, respectively. The 3.2- to 5.6-fold higher ligand density on sheep E appears to account for the ability of sheep but not human E to rosette with certain types of human T lymphocytes.  相似文献   

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