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1.
CPP基因家族是广泛存在于动植物中,成员数目较少的一类转录因子家族,在植物生殖发育和细胞分裂过程中起着重要的调控作用。本研究以橡胶树优良品种‘热研7-33-97’为供试材料,通过RT-PCR方法,在橡胶树花器官中克隆到一个CPP基因,命名为Hb CPP1(登录号为MF360959)。序列分析表明,Hb CPP1基因开放阅读框为1 755 bp,编码584个氨基酸,蛋白质分子量为63.676 k Da,等电点(PI)为8.4。序列多重比对结果显示,HbCPP1蛋白具有CPP蛋白的特征基序,含有2个保守的CXC结构域和1个比较保守R结构域。进化树分析表明,Hb CPP1属于A亚族基因,与其近缘物种木薯的Me CPP基因以及麻风树的Jc CPP7基因同源性较高,进化关系较近。氨基酸组分、理化性质以及蛋白结构预测分析显示,Hb CPP1蛋白是一个不具有跨膜结构和信号肽的不稳定亲水蛋白,可能定位于细胞核,其二级结构主要由两个蛋白结合区域和多个无规则的卷曲螺旋组成,其三级结构中CRC结构域构成了该蛋白的核心结构。利用QRT-PCR对Hb CPP1基因在橡胶树不同组织中的表达量进行检测,分析结果表明Hb CPP1基因在橡胶树茎尖、花序以及雌花中特异性高调表达。在干旱、盐、高温胁迫以及ABA处理下,Hb CPP1基因的表达量呈显著下调表达;而在低温处理下,Hb CPP1基因的表达量则呈显著上调表达,推测Hb CPP1基因可能参与了橡胶树花器官发育以及对多种非生物学胁迫的响应过程。  相似文献   

2.
张亮生  马成荣  戢茜  王翼飞 《遗传》2009,31(2):186-198
ET(Su(var), Enhancer of zeste (E(z)), and Trithorax)结构域基因家族是一组含有保守SET结构域的蛋白的统称, 它们参与蛋白甲基化, 影响染色体结构, 并且调控基因表达, 在植物发育中起着重要的作用。分析拟南芥和水稻中SET结构域基因家族进化关系, 对研究这一基因家族中各成员的功能有着重要的意义。我们系统地鉴定了47个拟南芥(Arabidopsis thaliana)和43个水稻(Orysa sativa japonica cultivar Nipponbare)的SET结构域基因, 染色体定位和基因复制分析表明SET结构域基因扩增是由片段复制和反转录引起的, 根据这些结构域差异和系统发育分析把拟南芥和水稻的SET结构域基因划分成5个亚家族。通过分析SET结构域基因家族在拟南芥和水稻各个发育阶段的表达谱, 发现SET结构域基因绝大部分至少在一个组织中表达; 大部分在花和花粉中高表达; 一些SET结构域基因在某些组织中有特异的表达模式, 表明与组织发育有密切的关系。在拟南芥和水稻中分别找到了4个差异表达基因。拟南芥4个差异基因都在花粉管高表达, 水稻4个差异基因有3个在雄性花蕊中高表达, 另一个在幼穗中高表达。  相似文献   

3.
小麦TaCRC基因的克隆及表达分析   总被引:2,自引:1,他引:1  
以小麦心皮为材料,利用RT-PCR方法分离出一个新的YABBY基因TaCRC,并利用Northern杂交对TaCRC在不同组织中的表达模式进行分析.结果显示:该基因全长1 105 bp,编码199个氨基酸.TaCRC具有YABBY家族典型的结构域,即N端含有C2C2锌指结构域,C端含有YABBY结构域.其氨基酸序列与水稻的 DROOPING LEAF(DL)、拟南芥的CRABS CLAW(CRC)和金鱼草的AmCRC的氨基酸具有较高的一致性.TaCRC在心皮中特异表达,类似于拟南芥的CRC的表达模式.研究表明,TaCRC是小麦中的CRC同源基因.  相似文献   

4.
采用同源克隆方法结合RACE技术,从日本晚樱(Prunus lannesiana)品种‘大岛樱’中克隆到花发育调控相关的PrseSHP基因(GenBank登录号为GU362645)。PrseSHP基因序列全长1 223bp,包含1个长741bp的完整开放阅读框,编码246个氨基酸和1个终止密码子。分子系统发生分析表明,PrseSHP属MADS-box转录因子的PLE/SHP进化系,并与蔷薇科植物的SHP同源蛋白聚于同一进化分支;蛋白序列比对显示,该转录因子拥有M、I、K和C共4个结构域,且其C末端结构域中包含高度保守的AGⅠ和Ⅱ基序。基因表达分析表明,PrseSHP基因主要在‘大岛樱’的花瓣、雄蕊、雌蕊和幼果等器官中表达,在花萼中仅能检测到微弱的转录信号,在幼叶中不表达,与其他植物SHP同源基因的表达模式有一定的差别。功能分析显示,转PrseSHP基因拟南芥植株明显比野生型拟南芥弱小,转基因拟南芥在6~8片莲座叶后即抽薹开花,时间较野生型拟南芥(14~17片莲座叶后抽薹开花)明显提前,证明异位表达的PrseSHP基因能促进拟南芥早花,其在花发育过程中可能参与调控植物开花。  相似文献   

5.
固醇是真核生物膜的重要组分, 在生长发育中具有重要作用。CPI1 (CYCLOPROPYL STEROL ISOMERASE1)基因是植物特有的固醇合成途径基因, 其编码产物为环丙基固醇异构酶。目前只有拟南芥(Arabidopsis thaliana)的CPI1基因被克隆并解析。研究发现, 从藻类到高等开花植物中均存在单一拷贝的CPI1基因。陆生植物CPI1的基因结构及其所编码的氨基酸序列均高度保守, 蛋白质序列相似性范围为48%–90%, 但陆生植物CPI1与绿藻CPI1的蛋白序列之间存在显著差异。蛋白质结构预测发现CPI1具有非常相似的拓扑结构, 均具有7个跨膜结构域和6个亲水环。组织表达模式分析显示, 陆生植物CPI1在不同组织中均表达, 是组成型表达基因。为了验证CPI1基因的功能, 克隆了二穗短柄草(Brachypodium distachyon)BdCPI1基因, 并转化拟南芥cpi1-1突变体。结果表明, BdCPI1能完全回补cpi1-1突变体的表型。基于单拷贝基因数目、保守的基因结构和蛋白质拓扑结构及基因表达模式, 推测CPI1基因的功能可能在陆生植物中高度保守。  相似文献   

6.
植物MADS-box 基因家族编码高度保守的转录因子, 参与了包括花发育在内的多种发育进程。为阐释双子叶植物草原龙胆(Eustoma grandiflorum)花器官发育的分子调控机制, 根据MADS-box基因保守序列设计简并引物, 用3'-RACE方法从 草原龙胆中克隆了4个花器官特异表达的MADS-box家族基因。序列和系统进化树分析表明, 这4个基因分别与金鱼草DEF基因、矮牵牛FBP3基因和FBP6基因以及拟南芥SEP3基因具有很高的同源性, 分别属DEF/GLO、AG-like和SEP-l ike亚家族。从而将这4个基因分别命名为EgDEF1、EgGLO1、EgPLE1和EgSEP3-1。推导的氨基酸序列显示, 这些基因编码的蛋白质都包含高度保守的MADS结构域、I结构域和K结构域, 每个基因均有其亚家族特异的C-末端功能域。基因特异性RT-PCR检测结果显示: EgDEF1 在萼片、花瓣、雄蕊及胚珠中高丰度表达, 在心皮中微量表达; 而EgGLO1在花瓣和雄蕊中高丰度表达, 在萼片中微量表达; 在根、茎、叶等营养器官中均未检测到上述2个基因的表达。EgPLE1在雌蕊、心皮和胚珠中特异表达, 但表达的丰度存在差异, 在雄蕊中的表达有所减弱。SEP-like亚家族基因EgSEP3-1在四轮花器官和胚珠中均特异表达,且表达丰度相对一致。  相似文献   

7.
徐宗昌  孔英珍 《遗传》2017,39(6):512-524
纤维素合成酶蛋白(cellulose-synthase proteins, CESA)是一类质膜定位蛋白,以蛋白复合体的形式存在于质膜上合成纤维素,在细胞壁建成和植物生长发育过程中起着非常重要的作用。本研究利用CESA蛋白保守域序列PF03552检索普通烟草(Nicotiana tabacum L.)蛋白序列,并通过拟南芥(Arabidopsis thaliana)10个CESA蛋白序列在普通烟草基因组数据库中利用TBLASTN程序进行比对,共获得21条NtCESA基因候选序列,对这些序列进行蛋白序列理化性质分析、系统进化树构建、基因结构分析、保守结构域及跨膜区分析和组织表达模式分析,并对NtCESA9和NtCESA14两个蛋白进行了亚细胞定位实验。结果表明:获得的21条NtCESA蛋白序列的理化性质相似;系统进化分析将21个NtCESA基因和10个AtCESA基因分成5个分支,每一个分支各成员之间的进化相对保守,基因结构类似,不同分支之间的基因结构差异也较小;NtCESA蛋白结构域相对保守,都含有CESA蛋白典型的N端锌指结构、C端跨膜区和DDD-QXXRW保守功能域;组织表达分析结果表明,大部分NtCESA基因在幼苗和成熟期烟草的根、叶、胚芽和愈伤组织中都有表达,同一个分支中的基因表达模式基本一致,并且NtCESA基因参与初/次生细胞壁纤维素的合成与该基因编码蛋白的跨膜区数目存在关联,表明NtCESA基因家族成员功能上的复杂性;亚细胞定位结果证实NtCESA9和NtCESA14为质膜定位蛋白。本研究为烟草CESA基因家族功能的深入研究奠定了基础。  相似文献   

8.
植物MADS-box基因家族的不同成员在植物生长发育过程中起着非常重要的作用。拟南芥MADS-box 基因FRUITFULL(FUL) 在控制拟南芥开花时间、花分生组织分化、茎生叶形态以及心皮和果实的发育中起到重要作用。其他植物中,FUL的同源基因也在调控花发育,果实发育以及叶片发育等方面各自起到重要作用。本文综述了FUL基因及其同源基因的表达模式和功能,并就其在农作物及果树育种上的潜在应用价值进行了讨论。  相似文献   

9.
活性氧(reactive oxygen species,ROS)在植物的信号转导中起着重要的作用。它们参与了植物的生长发育,生物及非生物胁迫和细胞死亡等过程。最近的研究发现呼吸爆发氧化酶(Respiratory burst oxidase homologues,Rboh)是植物ROS的主要生产者。拟南芥Rboh基因家族由10个成员组成,他们编码的蛋白包含6个跨膜结构域、以及C末端的FAD与NADPH亲水结构域和N末端的2个Ca2+结合EF手性结构。本文通过聚类分析发现拟南芥Rboh基因家族成员的三个分枝具有高度的同源性,这说明拟南芥Rboh家族成员间可能存在功能冗余。利用RT-PCR分析了各基因成员的时空表达特性,并对整个家族成员的缺失突变体进行表型分析发现,除了rboh C外,都没有明显的表型变化,这说明拟南芥Rboh C可能在植物发育过程中具有特殊的功能。  相似文献   

10.
以大豆天隆1号为材料,根据Glycine max Wm82.a2.v1中大豆基因组的预测序列,克隆出一个AP1同源基因,命名为GmAP1。该基因编码区CDS长度为711 bp,编码一个含236个氨基酸的蛋白质。对蛋白质序列的结构分析结果显示GmAP1蛋白符合MADS-box基因家族特征。为了初步分析GmAP1的功能,利用实时定量RT-PCR分析GmAP1在不同花器官中表达,并且在拟南芥中过表达该基因。在不同花器官中,GmAP1表达量不同,在花萼中表达量较高;花瓣次之。GmAP1过表达植株表现出早花、植株矮小以及花器官(花瓣、雄蕊和雌蕊)数量增多等表型。结果表明,大豆的GmAP1是一个功能保守的AP1基因,在花的发生和花器官发育中起着重要作用。  相似文献   

11.
CPP(cystein-richpolycomb-likeproteinor Tesmin/TOS1-like)家族属于成员数目较少的一类转录因子基因家族,含有保守的富含Cystein的CRC结构域,在植物发育进程中,主要参与花发育、细胞分裂、分子进化等。为了探索CPP转录因子家族在北美鹅掌楸花发育中的作用,该文以北美鹅掌楸(Liriodendron tulipifera)为材料,采用RACE技术克隆出1个CPP-like家族基因,命名为LtTCX2,全长2 866 bp。通过NCBI网站在线分析,ORF长2 424 bp,编码了807个氨基酸,含2个保守的TSO1-like CXC结构域,分子量为88 699.25 Da,理论等电点为5.83,不稳定系数为62.38,疏水性平均值为-0.619,预测为亲水性蛋白、非跨膜蛋白、核蛋白,不含信号肽及切割位点。氨基酸比对及系统进化分析结果显示,LtTCX2与其他物种的CPP家族TCX蛋白具有较高的同源性,与亚洲莲(Nelumbo nucifera)的NnTCX2、胡杨(Populus euphratica)的PeTCX2进化关系最近。荧光定量PCR结果显示,LtTCX2基因在叶片中表达量最高,在萼片、花瓣中几乎不表达,表达量由高至低如下:叶片、花芽、雌蕊、雄蕊、茎、根、花瓣、萼片。以上结果说明,LtTCX2属于较古老、保守的一类基因,可为从分子生物学层面研究鹅掌楸属植物系统进化提供一定的理论依据。  相似文献   

12.
CPP(cysteine-rich polycomb-like protein)转录因子广泛存在于动植物中,是一类成员数目较少的转录因子家族,在调控植物生长发育和响应非生物胁迫中起重要作用。该研究通过对茶树基因组系统的鉴定,获得10个CsCPP转录因子均具有典型的CXC结构域。系统发育分析将CsCPP家族成员分为4类(A^D),且大部分成员与葡萄在进化关系上更为接近。A类和C类成员的CXC结构域分布在蛋白序列的N端,而B类和D类成员分布在C端。茶树组织表达分析表明,CsCPP转录因子在生长活跃的顶芽和嫩叶中普遍高表达,不同组织的表达水平排序为:顶芽和嫩叶>根和茎>成熟叶和果>老叶和花。启动子分析发现了CsCPP家族成员的启动子区域存在大量的ABA和干旱响应元件;干旱处理下,6个CsCPP成员的表达水平均有不同程度上调,其中4个成员在ABA处理后表达迅速上调,表明CsCPP转录因子可能在ABA介导的干旱胁迫响应中起正调控作用;低温处理下,大部分CsCPP成员的表达均有轻微下调,而CsCPP 2和CsCPP 6的表达水平在6 h达到顶峰,表达量均超过2倍。研究结果为进一步发掘茶树CPP转录因子家族的功能奠定了基础。  相似文献   

13.
The major mechanism of cytotoxic lymphocyte killing involves the directed release of granules containing perforin and a number of proteases onto the target cell membrane. One of these proteases, granzyme B, has an unusual substrate site preference for Asp residues, a property that it shares with members of the emerging interleukin-1beta-converting enzyme (ICE)/CED-3 family of proteases. Here we show that granzyme B is sufficient to reproduce rapidly all of the key features of apoptosis, including the degradation of several protein substrates, when introduced into Jurkat cell-free extracts. Granzyme B-induced apoptosis was neutralized by a tetrapeptide inhibitor of the ICE/CED-3 family protease, CPP32, whereas a similar inhibitor of ICE had no effect. Granzyme B was found to convert CPP32, but not ICE, to its active form by cleaving between the large and small subunits of the CPP32 proenzyme, resulting in removal of the prodomain via an autocatalytic step. The cowpox virus protein CrmA, a known inhibitor of ICE family proteases as well as granzyme B, inhibited granzyme B-mediated CPP32 processing and apoptosis. These data demonstrate that CPP32 activation is a key event during apoptosis initiated by granzyme B.  相似文献   

14.
The extracellular effect of fibroblast growth factor-12 (FGF12) remains unknown because FGF12 cannot activate any fibroblast growth factor receptors (FGFRs), and FGF12 is not currently thought to be released from cells. We reported previously that FGF12 plays an intracellular role in the inhibition of radiation-induced apoptosis. In this study, we demonstrated that recombinant FGF12 was able to be internalized into the cytoplasm of a rat intestinal epithelial cell line, IEC6, and this process was dependent on two novel cell-penetrating peptide (CPP) domains (CPP-M and CPP-C). In particular, CPP-C, composed of ~10 amino acids, was identified as a specific domain of FGF12 and its subfamily in the C-terminal region (residues 140-149), although CPP-M was a common domain in the internal region of the FGF family. The absence of CPP-C from FGF12 or a mutation (E142L) in the CPP-C domain drastically reduced the internalization of FGF12 into cells. Therefore, CPP-C played an essential role in the internalization of FGF12. In addition, CPP-C was able to deliver other polypeptides into cells as a CPP because an FGF1/CPP-C chimeric protein was internalized into IEC6 cells more efficiently than wild-type FGF1. Finally, intraperitoneally added FGF12 inhibited radiation-induced apoptosis in the intestinal epithelial cells of BALB/c mice, and deletion of the CPP-C domain decreased the inhibition of the apoptosis. These findings suggest that exogenous FGF12 can play a role in tissues by translocating into cells through the plasma membrane, and the availability of this novel CPP provides a new tool for the intracellular delivery of bioactive molecules.  相似文献   

15.
人肺癌细胞CPP32基因的克隆及表达   总被引:1,自引:0,他引:1  
蛋白酶尤其是ICE家族的蛋白酶是细胞死亡机制的核心成分.ICE蛋白酶家族中,CPP32(又称Yama,apopain)在不同形式的凋亡途径中起核心作用.为深入研究CPP32的结构与功能,克隆了CPP32基因,并在大肠杆菌中进行了表达.采用RT-PCR技术从人肺癌细胞株中获得了CPP32蛋白酶基因.DNA序列分析表明,该基因由已报道的编码CPP32αp20亚单位和CPP32βp10亚单位的核苷酸组成,提示ICE家族蛋白酶寡聚化可能受DNA水平调控.将获得的CPP32基因分别重组到pBV321和pEX31B载体上,并分别转化到大肠杆菌中,均获得了CPP32基因的较高表达,表达产物主要以包涵体形式存在.  相似文献   

16.
Inhibition of apoptosis by the actin-regulatory protein gelsolin.   总被引:9,自引:0,他引:9       下载免费PDF全文
Gelsolin is an actin-regulatory protein that modulates actin assembly and disassembly, and is believed to regulate cell motility in vivo through modulation of the actin network. In addition to its actin-regulatory function, gelsolin has also been proposed to affect cell growth. Our present experiments have tested the possible involvement of gelsolin in the regulation of apoptosis, which is significantly affected by growth. When overexpressed in Jurkat cells, gelsolin strongly inhibited apoptosis induced by anti-Fas antibody, C2-ceramide or dexamethasone, without changing the F-actin morphology or the levels of Fas or Bcl-2 family proteins. Upon the induction of apoptosis, an increase in CPP32(-like) protease activity was observed in the control vector transfectants, while it was strongly suppressed in the gelsolin transfectants. Pro-CPP32 protein, an inactive form of CPP32 protease, remained uncleaved by anti-Fas treatment in the gelsolin transfectants, indicating that gelsolin blocks upstream of this protease. The tetrapeptide inhibitor of CPP32(-like) proteases strongly inhibited Fas-mediated apoptosis, but only partially suppressed both C2-ceramide- and dexamethasone-induced apoptosis. These data suggest that the critical target responsible for the execution of apoptosis may exist upstream of CPP32(-like) proteases in Jurkat cells and that gelsolin acts on this target to inhibit the apoptotic cell death program.  相似文献   

17.
Cell‐penetrating peptides (CPPs) are known as efficient transporters of molecular cargo across cellular membranes. Their properties make them ideal candidates for in vivo applications. However, challenges in the development of effective CPPs still exist: CPPs are often fast degraded by proteases and large concentration of CPPs required for cargo transporting can cause cytotoxicity. It was previously shown that restricting peptide flexibility can improve peptide stability against enzymatic degradation and limiting length of CPP peptide can lower cytotoxic effects. Here, we present peptides (30‐mers) that efficiently penetrate cellular membranes by combining very short CPP sequences and collagen‐like folding domains. The CPP domains are hexa‐arginine (R6) or arginine/glycine (RRGRRG). Folding is achieved through multiple proline–hydroxyproline–glycine (POG [proline‐hydroxyproline‐glycine])n repeats that form a collagen‐like triple helical conformation. The folded peptides with CPP domains are efficiently internalized, show stability against enzymatic degradation in human serum and have minimal toxicity. Peptides lacking correct folding (random coil) or CPP domains are unable to cross cellular membranes. These features make triple helical cell‐penetrating peptides promising candidates for efficient transporters of molecular cargo across cellular membranes. Copyright © 2014 European Peptide Society and John Wiley & Sons, Ltd.  相似文献   

18.
CTLL cells undergo apoptosis when cultured in the absence of IL-2. The IL-1-converting-enzyme (ICE)/ caspase family has been implicated as an integral component of some forms of apoptosis. Numerous members of the caspase family have been identified, and it appears as if caspase-3/CPP32 plays a critical role. Previously we demonstrated that ICE/caspase-1 expression increases in CTLL cells during apoptosis; however, inhibition of ICE activity did not abrogate apoptotic death. The purpose of this report is to determine if other members of the caspase family are involved in T cell apoptosis induced by growth factor starvation. We show that cytosolic CPP32-like activity, as measured by the cleavage of DEVD-pNA and poly(ADP-ribose) polymerase (PARP), increases during apoptosis following growth factor deprivation. Cytosolic CPP32-like activity is inhibited in cells treated with the broad spectrum ICE family inhibitor boc-aspartyl(OMe)-fluoromethylketone (D-FMK) and by VAD-FMK and DEVD-FMK which have greater specificity for CPP32-like ICE homologs; however, only the broad spectrum ICE inhibitor D-FMK inhibited apoptosis. Our results suggest that apoptosis induced by growth factor deprivation involves the caspase family, but increased CPP32-like activity is not sufficient to mediate apoptosis induced by IL-2 starvation.  相似文献   

19.
Cell penetrating peptides (CPP) have been widely used to increase the cellular delivery of their associated cargo. Multiple modes of uptake have been identified; however, they cannot be predicted a priori. Elucidating these mechanisms is important for understanding peptide function as well as further optimizing cellular delivery. We have developed a class of mitogen activated protein kinase activated protein kinase 2 (MK2) inhibitor peptides, named FAK and YARA that utilize CPP domains to gain cellular access. In this study, we investigate the mechanism of endocytosis of these MK2 inhibitors by examining the uptake of fluorescently labeled peptide in human monocyte (THP‐1) and mesothelial cells, and looking for colocalization with known markers of endocytosis. Our results indicate that uptake of the MK2 inhibitors was minimally enhanced by the addition of the fluorescent label, and that the type of endocytosis used by the inhibitor depends on several factors including concentration, cell type, and which CPP was used. We found that in THP‐1 cells, the uptake of YARA occurred primarily via macropinocytosis, whereas FAK entered via all three mechanisms of endocytosis examined in this study. In mesothelial cells, uptake of YARA occurred via caveolae‐mediated endocytosis, but became less specific at higher concentrations; whereas uptake of FAK occurred through clathrin‐mediated endocytosis. In all cases, the delivery resulted in active inhibition of MK2. In summary, the results support endocytic uptake of fluorescently labeled FAK and YARA in two different cell lines, with the mechanism of uptake dependent on extracellular concentration, cell type, and choice of CPP. Copyright © 2013 European Peptide Society and John Wiley & Sons, Ltd.  相似文献   

20.
src family tyrosine kinases contain two noncatalytic domains termed src homology 3 (SH3) and SH2 domains. Although several other signal transduction molecules also contain tandemly occurring SH3 and SH2 domains, the function of these closely spaced domains is not well understood. To identify the role of the SH3 domains of src family tyrosine kinases, we sought to identify proteins that interacted with this domain. By using the yeast two-hybrid system, we identified p62, a tyrosine-phosphorylated protein that associates with p21ras GTPase-activating protein, as a src family kinase SH3-domain-binding protein. Reconstitution of complexes containing p62 and the src family kinase p59fyn in HeLa cells demonstrated that complex formation resulted in tyrosine phosphorylation of p62 and was mediated by both the SH3 and SH2 domains of p59fyn. The phosphorylation of p62 by p59fyn required an intact SH3 domain, demonstrating that one function of the src family kinase SH3 domains is to bind and present certain substrates to the kinase. As p62 contains at least five SH3-domain-binding motifs and multiple tyrosine phosphorylation sites, p62 may interact with other signalling molecules via SH3 and SH2 domain interactions. Here we show that the SH3 and/or SH2 domains of the signalling proteins Grb2 and phospholipase C gamma-1 can interact with p62 both in vitro and in vivo. Thus, we propose that one function of the tandemly occurring SH3 and SH2 domains of src family kinases is to bind p62, a multifunctional SH3 and SH2 domain adapter protein, linking src family kinases to downstream effector and regulatory molecules.  相似文献   

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