首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 328 毫秒
1.
β-抑制蛋白(β arrestins)是一类在β肾上腺素受体激酶(βARK)提纯过程中发现的重要支架蛋白和信号调控因子;G蛋白偶联受体(GPCRs)为7次跨膜受体,在细胞信号转导中发挥关键作用,是很多临床药物的作用靶点. β-抑制蛋白作为衔接蛋白,调控GPCRs相关的信号通路,介导GPCRs的脱敏、内化、循环、复敏等生理过程,影响多种疾病的进程. 本文总结了β-抑制蛋白参与GPCRs信号通路的研究进展,侧重阐明了其中的分子机制,以期为开发新一代调控GPCRs功能活性的相关药物提供理论基础.  相似文献   

2.
《遗传》2020,(8)
G蛋白偶联受体(G protein-coupled receptors, GPCRs)作为最大的一类膜蛋白受体家族,可被多种配体激活并发挥相应的信号转导功能,参与生物体内重要的生理过程。G蛋白偶联受体相关分选蛋白(G protein-coupled receptors associated sorting proteins, GASPs)则对内吞后的GPCRs分选过程发挥着重要的作用,并介导受体进入降解或再循环途径,进而调控细胞的信号转导等过程。研究发现GASPs的功能缺陷与多种疾病相关,包括神经系统疾病、肿瘤和耳聋等。本文重点介绍了G蛋白偶联受体相关分选蛋白的功能特征及其相关信号通路,描述了GASPs功能缺陷与疾病的关联性及家族蛋白与GPCRs的相互作用、GASPs分选途径的发现、参与的信号通路及对基因转录调控,以期为GASPs相关多种疾病的治疗提供新的思路和策略。  相似文献   

3.
Tom1L1(Tom1 like 1)参与并调节细胞信号转导及受体运输通路。在不同细胞中Tom1L1对信号转导具有不同的调节作用。Tom1L1-CHC(clathrinheavychain)复合物减少Src蛋白在小窝(caveolae)处富集,从而阻碍Src蛋白与血小板衍生因子(platelet derived growth factor,PDGF)受体的结合。抑制PDGF受体介导的有丝分裂和转化信号传导。活化的表皮生长因子受体(epidermal growth factor receptor,EGFR)通过Src家族蛋白激酶(src family kinase,SFK)磷酸化T0m1L1,磷酸化的Tom1L1通过Grb2和Shc的桥梁作用与EGFR结合,介导EGFR的内吞进程。Tom1L1和Hrs(hepatocyte growth factor regulated tyrosine kinase substrate)、TSG101(tumor susceptibility gene 101)的相互作用表明,它也可能参与了泛素化蛋白分选入多泡体的过程。该文就其在细胞信号转导通路及受体内吞/分选过程的作用作一综述。  相似文献   

4.
Sorting nexins(SNXs)是一类含有SNX-PX结构域,并在细胞内吞和内体分选运输过程中发挥重要调节作用的蛋白。SNX7是SNXs家族中的一员,含有PX结构域和BAR结构域,属于SNX-PX-BAR亚家族。斑马鱼实验表明,SNX7是在肝脏中大量表达的抗凋亡蛋白,并在胚胎肝脏的发育中发挥关键作用。为了从蛋白水平对SNX7进行研究,首先将编码人源PX-BARSNX7(SNX7的一个片段,包含PX和BAR结构域)的cDNA片段插入到原核表达载体p28a中,再将重组质粒转化到大肠杆菌Rosseta 2(DE3)中诱导表达,并用亲和层析、离子交换和分子筛层析对PX-BARSNX7进行了纯化。Western blotting结果表明,亲和层析、离子交换和分子筛层析纯化后获得了高纯度的PX-BARSNX7蛋白。动态光散射实验显示PX-BARSNX7蛋白均一性良好。磷脂结合实验表明,PX-BARSNX7具有较为广泛的磷脂酰肌醇结合能力,能够与PtdIns(5)P、PtdIns(4,5)P2和PtdIns(3,4,5)P3结合。  相似文献   

5.
RIN1蛋白是人体内第一个特征性Ras效应蛋白,不仅可以通过调节Ras与Rab5蛋白的结合介导EGFR、TβR等受体的内吞作用,还可以直接激活ABL酪氨酸激酶活性。已有研究发现RIN1在膀胱癌、结肠癌、慢性粒细胞白血病等多种肿瘤的发生发展中发挥了重要作用。本文就此进行简要综述。  相似文献   

6.
炎症因子IL-1β是引起髓核细胞功能异常的关键因素之一。颗粒体蛋白原(progranulin,PGRN)是一种多功能生长因子,在组织修复、炎症反应等过程中发挥重要作用,但其在髓核细胞中的作用尚不清楚。本研究以IL-1β诱导的髓核细胞炎性损伤模型为研究对象,探讨PGRN对IL 1β诱导的髓核细胞损伤的保护作用及其机制。基因转染结合MTT方法证明,与IL-1β处理的细胞比较,过表达PGRN可逆转IL-1β引起的原代培养的髓核细胞生长抑制,促进细胞增殖。TUNEL技术和流式细胞分析显示,PGRN抑制IL-1β诱导的髓核细胞凋亡。Western印迹和RT-qPCR方法揭示,与IL-1β处理的细胞相比,过表达PGRN显著上调聚蛋白聚糖(aggrecan)和II型胶原(collagen type II)的蛋白质表达,但下调基质金属蛋白酶-13(MMP-13)、分解素-金属蛋白酶ADAMTS-5的表达,同时抑制IL-1β诱导的炎性因子IL-6、IL-8和TNF-α的表达,说明PGRN可缓解IL-1β引起的炎性反应,并减少细胞外基质(ECM)相关蛋白质的降解。此外,过表达PGRN还可降低p65、p-IkB a和β-catenin的蛋白质表达水平,提示PGRN可抑制IL-1β下游TNF-α介导的NF-κB信号途径及β-catenin途径。总之,上述结果提示,过表达PGRN可通过抑制IL-1β诱导的炎性反应、髓核细胞凋亡及基质代谢紊乱,缓解IL-1β诱导的髓核细胞损伤;PGRN的这种抗炎、抗基质降解作用可能与PGRN参与调控NF-κB和β-catenin信号途径有关。  相似文献   

7.
受体介导的内吞作用是目前公认的生物体摄取生物大分子的途径,而网格蛋白介导的内吞又是最主要的受体介导方式.结合国内外最新报道,介绍了网格蛋白和衔接蛋白的结构、分子特性和功能;从衔接蛋白、网格蛋白的招募;包被小凹的内陷、缢缩和包被液泡的芽殖和包被液泡的脱壳等过程,阐释了网格蛋白介导的内吞作用机制.  相似文献   

8.
研究肾小球裂隙膜的主要成分nephrin分子在细胞内的转运途径及不同转运途径对nephrin磷酸化的影响.分别应用笼型蛋白介导的内吞(clathrin-mediated endocytosis,CME)和脂筏介导的内吞(raft-mediated endocytosis,RME)标记物转铁蛋白和霍乱毒素B亚基对nephrin的内吞过程进行分析,并进一步应用两种内吞途径阻断物EPS15Δ和Dyn2aK44A,研究阻断nephrin的内吞途径对其磷酸化水平的影响.结果显示,nephrin通过笼型蛋白和脂筏介导的两种内吞途径以不同速率进行内吞;与Src酪氨酸激酶家族成员Fyn共表达时,细胞内nephrin酪氨酸磷酸化被增强,而在Src家族激酶抑制剂PP2的作用下,nephrin酪氨酸磷酸化被减弱,表明nephrin的磷酸化过程是Fyn依赖的;内吞20min时,笼型蛋白介导的内吞途径的特异性阻断物EPS15Δ降低了nephrin磷酸化水平、笼型蛋白和脂筏介导的内吞途径的通用抑制剂Dyn2aK44A则增加了nephrin的磷酸化水平,综上结果表明:单独阻断脂筏介导的内吞可引起nephrin的磷酸化水平增加,脂筏介导的内吞对nephrin磷酸化过程起下调作用.  相似文献   

9.
转铁蛋白受体不仅介导细胞内铁的摄取和参与细胞生长调节,而且能够在肿瘤细胞表面高度表达,被认为是一种有效的肿瘤标志物,广泛应用于各类恶性肿瘤的靶向治疗。利用转铁蛋白或转铁蛋白受体的单克隆抗体与转铁蛋白受体的特异性结合作用,通过受体介导的内吞机制实现化疗药物、蛋白毒素或治疗性基因等的细胞摄入。随着对转铁蛋白受体的深入研究,靶向转铁蛋白受体的肿瘤药物将在基因治疗和跨血脑屏障运输等多方面得到进一步应用。  相似文献   

10.
逆向囊泡转运复合物Retromer主要负责介导货物蛋白从内体向反式高尔基体或细胞表面逆向转运,是细胞内囊泡转运分选系统的重要成员.Retromer复合物主要含有两个亚复合体:货物选择复合体VPS26-VPS29-VPS35和膜结合复合体SNX-BAR.本文着重综述了Retromer复合物和SNX蛋白家族参与囊泡转运过程的分子机制以及它们在发育中对Wnt信号的调控作用;并讨论了Retromer复合物在细胞极性形成、细胞凋亡、神经元信号传递中的重要作用;以及该复合物与帕金森和阿尔茨海默病等退行性疾病之间的关系.  相似文献   

11.
Endosomal trafficking of EGF receptor (EGFR) upon stimulation is a highly regulated process during receptor-mediated signaling. Recently, the sorting nexin (SNX) family has emerged as an important regulator in the membrane trafficking of EGFR. Here, we report the identification of a novel interaction between two members of the family, SNX1 and SNX5, which is mediated by the newly defined BAR domain of both SNXs. We have also shown that the PX domain of SNX5 binds specifically to PtdIns other than to PtdIns(3)P. Furthermore, the BAR domain but not the PX domain of SNX5 is sufficient for its subcellular membrane association. Functionally, overexpression of SNX5 inhibits the degradation of EGFR. This process appears to be independent of its interaction with SNX1. However, overexpression of SNX1 is able to attenuate the effect of SNX5 on EGFR degradation, suggesting the two proteins may play antagonistic roles in regulating endosomal trafficking of the receptor.  相似文献   

12.
Hao X  Wang Y  Ren F  Zhu S  Ren Y  Jia B  Li YP  Shi Y  Chang Z 《Cellular signalling》2011,23(5):935-946
SNXs (sorting nexin), a family of proteins playing roles in cargo sorting and signaling from compartments within the endocytic network, regulate traffic of membrane proteins including TGF-β receptors. Here we report that the full length human and mouse SNX25, a SNX member with PX, PXA and RGS domains, co-localizes with TGF-β receptors, and forms internalized cytosolic punctae upon treatment with TGF-β. While overexpression of SNX25 inhibits TGF-β induced luciferase reporter activity, knocking down endogenous SNX25 by siRNA in NIH3T3 cells elevates the TGF-β receptor levels and facilitates TGF-β signaling. Immunoprecipitation experiments demonstrate that SNX25 interacts with TβRI. Western blot analyses indicate that SNX25 enhances the degradation of TGF-β receptors. SNX25 induced TGF-β receptor degradation is shown via the clathrin dependent endocytosis pathway into lysosome. We have characterized that PXA domain of SNX25 is required for the degradation of TβRI. Our findings demonstrate that SNX25 negatively regulates TGF-β signaling by enhancing the receptor degradation through lysosome pathway.  相似文献   

13.
SNX17 is a member of the sorting nexin family (SNX), a group of hydrophilic proteins whose common characteristic property is a phox homology (PX) domain. The PX domain directs SNXs to phosphatidylinositides containing membranes of the endosomal compartment, where the SNXs are involved in the sorting of transmembrane proteins. SNX17 is known to interact with P-selectin and the LDL receptor family. Here, we report that the PX domain of SNX17 specifically binds to phosphatidylinositol 3-phosphate-containing membranes. The functional part of SNX17 that binds P-selectin or Patched (PTCH) consists of a truncated FERM domain and a unique C terminus together (FC-unit). In a yeast two-hybrid analysis a putative recognition motif for the FC-unit was revealed within P-selectin as FxNaa(F/Y). When HepG2 cells overexpress P-selectin together with SNX17, SNX17 changes its distribution from early endosomes to lysobisphosphatidic acid-containing late endosomes. Furthermore, overexpressed SNX17 restrains P-selectin in the outer membrane of the late endosomal compartment, thus preventing the normal lysosomal accumulation of P-selectin. These results suggest that the PX domain is necessary for the intracellular localisation, while the FC-unit is required for cargo recognition. We hypothesise that the expression level of SNX17 may regulate the lysosomal degradation, at least for P-selectin, by suppressing its entry into the inner vesicles of the multi-vesicular bodies (MVBs).  相似文献   

14.
Sorting nexins (SNXs) are conserved eukaryotic proteins that associate with three types of vacuolar protein sorting (VPS) proteins to form the retromer complex. How SNXs act in this complex and whether they might work independently of the retromer remains elusive. Here, we show by genetic and cell imaging approaches that the Arabidopsis thaliana SNX1 protein recruits SNX2 at the endosomal membrane, a process required for SNX1-SNX2 dimer activity. We report that, in contrast with the mammalian retromer, SNXs are dispensable for membrane binding and function of the retromer complex. We also show that VPS retromer components can work with or independently of SNXs in the trafficking of seed storage proteins, which reveals distinct functions for subcomplexes of the plant retromer. Finally, we provide compelling evidence that the combined loss of function of SNXs and VPS29 leads to embryo or seedling lethality, underlining the essential role of these proteins in development.  相似文献   

15.
The sorting nexins (SNXs) are a family of PX domain-containing proteins found in yeast and mammalian cells that have been proposed to regulate intracellular trafficking. Mammalian SNXs have been suggested to function variously in pro-degradative sorting, internalization, endosomal recycling, or simply in endosomal sorting. In yeast, the defining function for these proteins is a regulation of cargo retrieval. Here we examine recent data on the SNX family of proteins and attempt to draw out unifying themes between the work performed in yeast and mammalian systems.  相似文献   

16.
Sorting nexins (SNXs) are a growing family of proteins characterized by the presence of a PX domain. The PX domain mediates membrane association by interaction with phosphoinositides. The SNXs are generally believed to participate in membrane trafficking, but information regarding the function of individual proteins is limited. In this report, we describe the major characteristics of one member, SNX16. SNX16 is a novel 343-amino acid protein consisting of a central PX domain followed by a potential coiled-coil domain and a C-terminal region. Like other sorting nexins, SNX16 associates with the membrane via the PX domain which interacts with the phospholipid phosphatidylinositol 3-phosphate. We show via biochemical and cellular studies that SNX16 is distributed in both early and late endosome/lysosome structures. The coiled-coil domain is necessary for localization to the later endosomal structures, as mutant SNX16 lacking this domain was found only in early endosomes. Trafficking of internalized epidermal growth factor was also delayed by this SNX16 mutant, as these cells showed a delay in the segregation of epidermal growth factor in the early endosome for its delivery to later compartments. In addition, the coiled-coil domain is shown here to be important for homo-oligomerization of SNX16. Taken together, these results suggest that SNX16 is a sorting nexin that may function in the trafficking of proteins between the early and late endosomal compartments.  相似文献   

17.
Lysosomal degradation is essential for the termination of EGF‐stimulated EGF receptor (EGFR) signaling. This requires EGFR sorting to the intraluminal vesicles (ILVs) of multi‐vesicular endosomes (MVEs). Cytosolic proteins including the ESCRT machineries are key regulators of EGFR intraluminal sorting, but roles for endosomal transmembrane proteins in receptor sorting are poorly defined. Here, we show that LAPTM4B, an endosomal transmembrane oncoprotein, inhibits EGF‐induced EGFR intraluminal sorting and lysosomal degradation, leading to enhanced and prolonged EGFR signaling. LAPTM4B blocks EGFR sorting by promoting ubiquitination of Hrs (an ESCRT‐0 subunit), which inhibits the Hrs association with ubiquitinated EGFR. This is counteracted by the endosomal PIP kinase, PIPKIγi5, which directly binds LAPTM4B and neutralizes the inhibitory function of LAPTM4B in EGFR sorting by generating PtdIns(4,5)P2 and recruiting SNX5. PtdIns(4,5)P2 and SNX5 function together to protect Hrs from ubiquitination, thereby promoting EGFR intraluminal sorting. These results reveal an essential layer of EGFR trafficking regulated by LAPTM4B, PtdIns(4,5)P2 signaling, and the ESCRT complex and define a mechanism by which the oncoprotein LAPTM4B can transform cells and promote tumor progression.  相似文献   

18.
As a subgroup of sorting nexins (SNXs) that contain regulator of G protein signaling homology (RH) domain, SNX-RH proteins, including SNX13, SNX14 and SNX25, were proposed to play bifunctional roles in protein sorting and GPCR signaling regulation. However, mechanistic details of SNX-RH proteins functioning via RH domain remain to be illustrated. Here, we delineate crystal structures of the RH domains of SNX13 and SNX25, revealing a homodimer of SNX13 RH domain mediated by unique extended α4 and α5 helices, and a thiol modulated homodimer of SNX25-RH triggered by a unique cysteine on α6 helix. Further studies showed that RH domains of SNX-RH do not possess binding capacity toward Gα subunits, owing to the lack of critical residues for interaction. Thus, this study identifies a group of novel non-canonical RH domains that can act as a dimerization module in sorting nexins, which provides structural basis for mechanism studies on SNX-RH protein functions.  相似文献   

19.
Phox (PX) domain-containing sorting nexins (SNXs) are emerging as important regulators of endocytic trafficking. Sorting nexin 27 (SNX27) is unique, as it contains a PDZ (Psd-95/Dlg/ZO1) domain. We show here that SNX27 is primarily targeted to the early endosome by interaction of its PX domain with PtdIns(3)P. Although targeted ablation of the SNX27 gene in mice did not significantly affect growth and survival during embryonic development, SNX27 plays an essential role in postnatal growth and survival. N-Methyl-d-aspartate (NMDA) receptor 2C (NR2C) was identified as a novel SNX27-interacting protein, and this interaction is mediated by the PDZ domain of SNX27 and the C-terminal PDZ-binding motif of NR2C. Increased NR2C expression levels, together with impaired NR2C endocytosis in SNX27(-/-) neurons, indicate that SNX27 may function to regulate endocytosis and/or endosomal sorting of NR2C. This is consistent with a role of SNX27 as a general regulator for sorting of membrane proteins containing a PDZ-binding motif, and its absence may alter the trafficking of these proteins, leading to growth and survival defects.  相似文献   

20.
Sorting nexins (SNXs) comprise a family of proteins characterized by the presence of a phox-homology domain, which mediates the association of these proteins with phosphoinositides and recruits them to specific membranes or vesicular structures within cells. Although only limited information about SNXs and their functions is available, they seem to be involved in membrane trafficking and sorting processes by directly binding to target proteins such as certain growth factor receptors. We show that SNX17 binds to the intracellular domain of some members of the low-density lipoprotein receptor (LDLR) family such as LDLR, VLDLR, ApoER2 and LDLR-related protein. SNX17 resides on distinct vesicular structures partially overlapping with endosomal compartments characterized by the presence of EEA1 and rab4. Using rhodamine-labeled LDL, it was possible to demonstrate that during endocytosis, LDL passes through SNX17-positive compartments. Functional studies on the LDLR pathway showed that SNX17 enhances the endocytosis rate of this receptor. Our results identify SNX17 as a novel adaptor protein for LDLR family members and define a novel mechanism for modulation of their endocytic activity.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号