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1.
简化了测定动物小块骨胳肌氯化物、钠、钾、钙、镁浓度的方法,并用以测定了成年与出壳前、后鸡快、慢肌和大鼠红、白肌的电解质浓度。用氯化物浓度推导了不同骨胳肌的胞内、外容积及其离子浓度。不同类型肌肉的胞内、外容积差别很大。这提示,如果某种不能透过细胞膜的药物在不同肌肉中分布的浓度不同,在一般情况下,这未必是药物对不同肌肉的亲合力有异,而应考虑到胞外容积不同这一因素。  相似文献   

2.
大鼠不同发育时期胰腺相关蛋白的差异表达   总被引:5,自引:0,他引:5  
探讨大鼠胰腺不同发育时期相关蛋白的差异表达,应用显微技术分离了大鼠孕15.5天,孕18.5天胚胎胰腺和新生鼠及成年鼠的胰腺,提取其蛋白质后,用固相pH梯度双向聚丙烯酰胺凝胶电泳和质谱分析等蛋白质组学方法,得到了4个不同发育时期的蛋白质表达谱.对其中的6个在孕18.5天胚胎胰腺中有高丰度表达,而在成年鼠胰腺中缺失的蛋白质点,4个在成年胰腺中特异表达的蛋白质点, 8个在成年胰腺中表达明显下调的蛋白质点和1个在成年中表达上调的点,进行了肽质量指纹分析和蛋白质鉴定,共获得18个点的肽质量指纹图.经BIOWORK等软件搜索大鼠非冗余蛋白质数据库来鉴定其身份,发现其中7个点为大鼠甲胎蛋白(AFP)、5个点为胰脂酶相关蛋白1前体、1个点为微管蛋白β、2个点为蛋白二硫异构酶、1个为FLN29基因产物的类似物、1个为胰蛋白酶V-A前体、1个为过氧化物氧化还原酶4.其中AFP为特异表达于大鼠胚胎期及新生期胰腺的蛋白质,在孕18.5天的胰腺中表达量最高,在成年胰腺中极低表达.对它们的功能和与胚胎胰腺代谢调节功能完善过程的可能关系进行了初步探讨.  相似文献   

3.
段颖莉  于舒洋  李宁 《遗传》2002,24(6):699-706
脊椎动物中的肌钙蛋白T(tropnin T,TnT)分为心肌型TnT(cardiac TnT,cTnT)、快肌型TnT(fast skeletal TnT,fTnT)和慢肌型TnT(slow skeletal TnT,sTnT),且每种TnT又因mRNA可变剪接(alternative mRNA splicing)形成了多种同工异构型,其中fTnT的同工异构型形式最为复杂。某些鸟类如鸡形目鸟类的成熟快肌(尤其是胸部快肌)中特异性表达的TnT同工异构型有如下特点:(1)N端区含有过渡金属离子结合位点——Tx元件(一般为4~7个重复的H-E/A-E-A-H序列);(2)与哺乳动物及雏鸟fTnT相比,其C端区外显子16有很高的表达率。本文还就鸡形目鸟类成熟胸肌中表达的fTnT同工异构型可能具有的生理学意义及应用前景进行了探讨。 The Fast TnT Isoforms Specifically Expressed in Avian Adult Pectoral Muscles of Galliforms and Physiological Significance DUAN Ying-li,YU Shu-yang,LI Ning National Laboratories for Agrobiotechnology,China Agricultural University,Beijing 100094,China Abstract:Three homologous genes have evolved to encode the cardiac,slow and fast skeletal muscle troponin Ts(TnTs) in the vertebrate.Multiple isoforms in each type of TnT are generated through alternative mRNA splicing during the development and the modality of the fast skeletal TnT isoforms is the most complex.The TnT isoforms specifically expressed in avian adult fast skeletal muscle (especially in the adult pectoral muscle) of Galliforms have been characterized as follows:1.There exist a cluster of transition metal ion binding sites [generally 4~7 repeats of a sequence motif His-(Glu/Ala)- Glu-Ala-His,designated as Tx] in the NH2-terminal variable region.2.Compared with mammalian TnT and the neonatal or young avian TnT,these avian pectoral muscle TnTs prefer to express exon 16 in the COOH-terminal variable region.Furthermore,possible effects of the pectoral fTnT isoforms on the physiological activity are discussed in this article. Key words:Aves; troponin T; isoform  相似文献   

4.
利用高密度寡核苷酸芯片技术对大鼠胚胎胰腺发育中晚期(E12.5,E18.5,E15.5)调节内外分泌部细胞发育分化及功能代谢的基因的表达趋势进行研究。并用RT-PCR进行验证。用获得的基因信息对:NCBI等公共数据库进行检索,结果发现对细胞的分化、增殖和凋亡起调节作用的BTG2基因在大鼠胚胎胰腺E12.5、E15.5、E18.5天及成年、新生大鼠胰腺中均有表达,且E18.5天的表达量高于其他时期5倍多。推测BTG2可能在大鼠胚胎胰腺内外分泌细胞分化发育的不同阶段起到了促进作用,并参与胚胎胰腺发育晚期的功能代谢完善过程。  相似文献   

5.
陈钟芳  马俊涛 《生理学报》1992,44(4):370-378
在胚胎和新生的中枢神经系统(CNS)内,发育中的纤维束通道能引导轴突的生长。为了了解发育中的纤维束通道能否引导成年CNS轴突的生长,将胚胎海马伞移植到成年大鼠的海马,两周后,用AChE组织化学方法检查移植物内的胆碱能纤维。结果如下:在胚胎的海马伞移植物内出现大量的胆碱能纤维,但在成年的海马伞移植物内没有宿主的胆碱能纤维长入;如果在移植胚胎海马伞的同时,切断宿主的海马伞-穹窿通路,则在胚胎移植物和宿主海马内均无胆碱能纤维;将胚胎海马伞作成悬浮液进行移植,在移植部位,仅能看到少数长的胆碱能纤维;但是若把胚胎海马伞的组织碎片粘附在硝化纤维素滤纸条周围,再移植到成年大鼠海马内,来自宿主海马的大量胆碱能纤维被吸引围绕着滤纸条并沿其表面生长。结果似乎表明:胚胎海马伞或胚胎海马伞碎片都能有效引导宿主海马胆碱能纤维的生长。因此,胚胎海马伞和其它发育中的CNS纤维束通道可能是引导成年CNS轴突生长的良好天然基质。  相似文献   

6.
用非标记免疫酶技术观察比较了33例大鼠移植性肝癌BERH-2,1例二乙基亚硝胺诱发原发性大鼠肝癌和18例不同胎龄的胚胎鼠肝组织。证明在癌细胞的表面膜上存在着一种胚胎性抗原。这种胚胎抗原在13—14天胚胎肝细胞表面反应强烈,随着胚胎发育而减弱,在大多数正常成年大鼠肝细胞中则呈阴性或弱阳性。二乙基亚硝胺诱发大鼠肝脏癌变后,这种胚胎抗原在癌细胞表面膜上又呈强阳性反应。  相似文献   

7.
肥厚型和扩张型心肌病中,基因缺陷分别占发病的50%和35%,其病理生理机制,主要包括肌小节蛋白基因突变引起的收缩力产生缺陷,细胞骨架蛋白基因突变引起的收缩力传递缺陷等。心肌肌钙蛋白T将肌钙蛋白C和肌钙蛋白I连接到肌动蛋白和原肌球蛋白上,在心肌细胞收缩和舒张过程中发挥重要作用。在肥厚型和扩张型心肌病中发现了多种心肌肌钙蛋白T的基因突变,围绕心肌肌钙蛋白T的研究有助于阐明心肌病的发病机制。本文总结了心肌肌钙蛋白T基因突变在心肌病发病机制中的研究情况。  相似文献   

8.
目的:探讨碳酸氢钠协同转运载体(NBC1)在大鼠胰腺胚胎发育期不同阶段核酸、蛋白水平的动态变化以及在腺泡和β细胞的定位表达。方法:采用高密度寡核苷酸芯片对孕12.5 d(E12.5)、E15.5、E18.5、新生和成年胰腺进行基因转录水平分析,用RT-PCR和Western blot分别验证了NBC1核酸和蛋白在E15.5、E18.5、新生和成年时期胰腺中的表达情况,用Double fluorescence immunohistochemistry分析了NBC1在E18.5、新生和成年时期胰腺腺泡和β细胞的定位表达。结果:在大鼠胰腺胚胎发育过程中,NBC1核酸、蛋白在E18.5时特异高表达,新生下降直至成年最低;在腺泡基底侧膜和β细胞膜有强烈的阳性信号,且在成年胰腺中β细胞膜阳性信号较腺泡基底侧膜强。NBC1的表达变化与其功能近似基因的表达趋势相反,而与其协同发挥作用的基因及胰腺特异基因的表达趋势一致。结论:NBC1在胰腺发育过程中不仅与结构形成而且与功能发挥相关。  相似文献   

9.
发育过程中肝脏血管活性肠肽及其受体量的变化   总被引:3,自引:2,他引:1  
Wang L  Tang CW  Wang CH  Li X 《生理学报》2005,57(3):379-383
已有的研究观察到,胚胎肝脏中血管活性肠肽(vasoactiveintestinalpolypeptide,VIP)及其受体(vasoactiveintesti-nalpolypeptidereceptor,VIPR)与造血干细胞生长和肝脏发育有关。本研究旨在了解发育过程中肝VIP及VIPR量的动态变化。采用放射免疫分析法、生物分子相互作用系统和RT-PCR等技术检测了各发育阶段大鼠肝组织VIP浓度、VIP受体结合量及VIP受体表达亚型,实验观察到胎鼠和新生鼠肝脏VIP浓度显著低于未成年鼠及成年鼠肝脏VIP浓度(P<0.05)。发育尚未成熟时(胎鼠、新生鼠、未成年鼠),肝VIPR表达均明显高于成年鼠(P<0.05),表明大鼠在发育过程中肝脏VIP与VIP受体量呈相反的变化趋势。大鼠发育各时期,肝脏均表达VIPR-1。这些结果部分解释了肝脏发育、肝脏造血转移等重要生理现象。  相似文献   

10.
Southern blotting分析没有发现成年大鼠肝、胚肝及肝癌细胞AFP基因5'端及上游有任何不同。以AFP基因转录起始点到5'端上游255bpDNA片段为探针进行Southwesternblotting分析,发现表达AFP基因的细胞核蛋白中存在与其结合的核蛋白,这些在成年大鼠肝、肺、脾、心和肾细胞核蛋白中不存在。含有结合蛋白的肝癌核蛋白部分能使作为RNA聚合酶Ⅱ来源的成年大鼠肝细胞核蛋白部  相似文献   

11.
Fetal rat skeletal muscles express a troponin T (TnT) isoform similar to the TnT isoform expressed in the embryonic heart with respect to electrophoretic mobility and immunoreactivity with cardiac TnT-specific monoclonal antibodies. Immunoblotting analyses reveal that both the embryonic and the adult isoforms of cardiac TnT are transiently expressed during the neonatal stages. In addition, other TnT species, different from both cardiac TnTs and from the TnT isoforms expressed in adult muscles, are present in skeletal muscles during the first two postnatal weeks. By immunocytochemistry, cardiac TnT is detectable at the somitic stage and throughout embryonic and fetal development, and disappears during the first weeks after birth, persisting exclusively in the bag fibers of the muscle spindles. Cardiac TnT is re-expressed in regenerating muscle fibers following a cold injury and in mature muscle fibers after denervation. Developmental regulation of this TnT variant is not coordinated with that of the embryonic myosin heavy chain with respect to timing of disappearance and cellular distribution. No obligatory correlation between the two proteins is likewise found in regenerating and denervated muscles.  相似文献   

12.
We have isolated and sequenced a cDNA encoding rat cardiac troponin I. The predicted amino acid sequence was highly identical with previously reported chemically derived amino acid sequences for rabbit and bovine cardiac troponin I. Clones for slow skeletal muscle troponin I were also obtained from neonatal rat cardiac ventricle by the polymerase chain reaction. The nucleotide sequences of these clones were determined to be more than 99% identical with a previously reported rat slow skeletal troponin I cDNA [Koppe et al. (1989) J. Biol. Chem. 264, 14327-14333]. The troponin I clones hybridized to RNA from the appropriate muscle from adult animals. However, RNA from fetal and neonatal rat heart also hybridized with the slow skeletal troponin I cDNA, demonstrating its expression in fetal and neonatal rat heart. Slow skeletal troponin I steady-state mRNA levels decreased with increasing age, but cardiac troponin I mRNA levels increased through fetal and early neonatal cardiac development. Thus, during fetal and neonatal development, slow skeletal and cardiac troponin I isoforms are coexpressed in the rat heart and regulated in opposite directions. The degree of primary sequence differences in these isoforms, especially at phosphorylation sites, may result in important functional differences in the neonatal myocardium.  相似文献   

13.
Troponin T switching in the developing rat heart   总被引:6,自引:0,他引:6  
A monoclonal antibody specific for cardiac troponin T has been used to investigate troponin changes during development in the rat heart. Specificity of the antibody was determined by immunoblot analysis with purified bovine cardiac troponin. In the rat heart, immunoblot analysis shows that anticardiac troponin T reacts with a 42.5-kDa band in fetal ventricles and with a 41-kDa band in adult ventricles. The faster migrating troponin T is present in traces in the fetal heart and increases markedly during the first 2 weeks after birth, concomitantly with the progressive decrease of the slower migrating form that is no longer detectable in the adult. The pattern of reactivity of the monoclonal antibody is not modified by alkaline phosphatase pretreatment, suggesting that the antibody is not specific for a phosphorylated epitope. Conditions known to affect cardiac myosin composition, such as hypothyroidism and hypertrophy secondary to systemic hypertension, do not change the troponin T isoform profile of adult rat ventricles. The expression and accumulation of the adult isoforms of troponin T are not suppressed by propylthiouracil treatment of pregnant and nursing rats.  相似文献   

14.
Troponin I switching in the developing heart   总被引:9,自引:0,他引:9  
Monoclonal antibodies identify two distinct isoforms of troponin I in rat cardiac muscle, one predominant in the embryonic and fetal heart and one predominant in the adult heart. The two isoforms can be resolved by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, with apparent molecular weights of 27,000 and 31,500, respectively. The adult isoform is specifically recognized by a monoclonal antibody that is unreactive with the embryonic variant, while two other monoclonal antibodies recognize both isoforms. A monoclonal antibody to cardiac troponin T was used to isolate by affinity chromatography the troponin complex from adult and neonatal rat heart. Affinity purified troponin from neonatal heart was found to contain both the embryonic and adult isoforms of troponin I. Comparative immunoblotting analysis with different muscle tissues shows that embryonic troponin I is identical with respect to electrophoretic mobility and pattern of immunoreactivity to the major troponin I isoform found in adult slow skeletal muscle. Troponin I switching may be implicated in developmental changes involving Ca2+ and pH sensitivity of the contractile system and response to beta-adrenergic stimulation.  相似文献   

15.
In adult fast skeletal muscle, specific combinations of thin filament and Z-line protein isoforms are coexpressed. To determine whether the expression of these sets of proteins, designated the TnT1f, TnT2f, and TnT3f programs, is coordinated during development, we characterized the transitions in troponin T (TnT), tropomyosin (Tm), and alpha-actinin isoforms that occur in developing fetal and neonatal rabbit skeletal muscle. Two coordinated developmental transitions were identified, and a novel pattern of thin filament expression was found in fetal muscle. In fetal muscle, new TnT species--whose protein and immunochemical properties suggest that they are the products of a new TnT gene--are expressed in combination with beta 2 Tm and alpha-actinin1f/s. This pattern, which is found in both back and hindlimb muscles, is specific to fetal and early neonatal muscle. Just prior to birth, there is a transition from the fetal program to the isoforms that define the TnT3f program, TnT3f, and alpha beta Tm. Like the fetal program, expression of the TnT3f program appears to be a general feature of muscle development, because it occurs in a variety of fast muscles as well as in the slow muscle soleus. The transition to adult patterns of thin filament expression begins at the end of the first postnatal week. Based on studies of erector spinae, the isoforms comprising the TnT2f program, TnT2f, alpha 2 Tm, and alpha-actinin2f, appear and increase coordinately at this time. The transitions, first to the TnT3f program, and then to adult patterns of expression indicate that synthesis of the isoforms comprising each program is coordinated during muscle specialization and throughout muscle development. In addition, these observations point to a dual role for the TnT3f program, which is the major thin filament program in some adult muscles, but appears to bridge the transition from developmentally to physiologically regulated patterns of thin filament expression during the late fetal and early neonatal development.  相似文献   

16.
Numerous troponin T (TnT) isoforms are produced by alternative splicing from three genes characteristic of cardiac, fast skeletal, and slow skeletal muscles. Apart from the developmental transition of fast skeletal muscle TnT isoforms, switching of TnT expression during muscle development is poorly understood. In this study, we investigated precisely and comprehensively developmental changes in chicken cardiac and slow skeletal muscle TnT isoforms by two-dimensional gel electrophoresis and immunoblotting with specific antisera. Four major isoforms composed of two each of higher and lower molecular weights were found in cardiac TnT (cTnT). Expression of cTnT changed from high- to low-molecular-weight isoforms during cardiac muscle development. On the other hand, such a transition was not found and only high-molecular-weight isoforms were expressed in the early stages of chicken skeletal muscle development. Two major and three minor isoforms of slow skeletal muscle TnT (sTnT), three of which were newly found in this study, were expressed in chicken skeletal muscles. The major sTnT isoforms were commonly detected throughout development in slow and mixed skeletal muscles, and at developmental stages until hatching-out in fast skeletal muscles. The expression of minor sTnT isoforms varied from muscle to muscle and during development.  相似文献   

17.
A rapid purification of troponin T from adult hearts of various species has been developed. The purification procedure included 60 degrees C treatment of the high salt extract, ammonium sulfate fractionation, and DEAE-cellulose column chromatography. The troponin T purified from the bovine left ventricle contained two isoforms, which differed in both apparent molecular mass and isoelectric point. Both isoforms were able to bind to F-actin filaments only in the presence of tropomyosin. Monoclonal antibody JLT12 against rabbit skeletal troponin T cross-reacted with both isoforms of bovine cardiac troponin T. There was no detectable difference in the relative amount of these two isoforms among different portions (atria, right and left ventricles) of the bovine heart. The purified protein was used as an antigen to immunize mice, and a mouse antiserum with high titer and specificity to both isoforms was subsequently obtained. This antiserum also cross-reacted with cardiac troponin T from chicken, rabbit, and rat. The antibodies were further used to probe cardiac development in rats by Western blotting and immunoprecipitation. The results clearly showed that there was a switch of troponin T isoforms between hearts from 20-day-old rat embryos and hearts from 14-day-old rats. Immunoprecipitation of the in vitro translation products of poly(A)+ RNA isolated from day 5 rat hearts revealed the presence of two isoforms of troponin T, suggesting that two mRNAs coding for these two isoforms existed in the heart cells. It is of interest to not that some profound changes in the morphology and function of cardiac muscle have also been detected at this time of development. Troponin T isoform switching thus may well represent an important marker for cardiac development and function.  相似文献   

18.
19.
Summary The regeneration of skeletal muscle fibers of the adult chicken was examined after a focal injury brought about with a liquid-nitrogen cooled brass rod. Immunofluorescence microscopy with antibodies specific for troponin (TN) components (T, I, and C) from adult chicken breast and ventricular muscles showed the presence of different fiber types in both the anterior and posterior latissimus dorsi muscles. New fibers produced in the regions adjacent to the site of injury in both muscles exhibited the same immunoreactivities as those previously seen in embryonic skeletal muscles. As differentiation proceeded, regenerating cells lost their embryonic antigenicities and recovered their characteristic adult reactivities. These results indicate that, during regeneration from cold injury, skeletal muscles apparently pass again through an embryonic stage during which they synthesize embryonic-like TN isoforms.  相似文献   

20.
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