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The cortical collecting tubule (CCT) of the mammalian kidney reabsorbs sodium and potassium, processes that are mediated by Na/K-ATPase and H/K-ATPase. CCT is also an important site for proton secretion, which is driven, in part, by H/K-ATPase. Na/K-ATPase and H/K-ATPase are members of the ion-motive P-ATPase gene family. They are closely related plasma membrane proteins which consist of heterodimers. The urinary bladder of the toad Bufo marinus is the amphibian counterpart of mammalian CCT. We have previously characterized a ouabain-resistant Na/K-ATPase [see ref. 17], from TBM cells, a clonal cell line derived from the toad bladder, which expresses transepithelial sodium transport. In the present study, we report the primary sequence and functional expression of a novel subunit ( bladder= bl) isolated from a toad bladder epithelial cell cDNA library. The deduced polypeptide is 299 amino acids in length and has a predicted molecular mass of 33 kDa. The bl protein exhibits 35% amino acid identity to the previously characterized 1 of B. marinus Na/K-ATPase and 39% identity with 3 of B. marinus Na/K-ATPase. It shares 38% identity with the mammalian gastric H/K-ATPase and 52% with the mammalian 2 Na/K-ATPase. Northern blot analysis shows that a 1.4×103-base mRNA is expressed at a high level in bladder epithelial cells and eye and at a trace level in kidney; it is not detectable in significant amounts in the stomach, colon and small intestine. The bl subunit can associate with the 1 subunit of B. marinus Na/K-ATPase to form a functional sodium pump in the Xenopus laevis oocyte. Our data indicate that, in addition to the known 1 and 3 isoforms, a third distinct isoform of the subunit is present in the bladder epithelium. This new isoform could be functionally associated with subunits of either Na/K- or H/K-ATPase.  相似文献   
13.
Class I molecules of the major histocompatibility complex bind peptides derived from cytosolic proteins and display them on the cell surface. This function alerts cytotoxic T cells to the presence of intracellular pathogens. Class I molecule assembly requires the association of the heavy chain with β2-microglobulin, accompanied by peptide loading via specific transporters. This study localizes where these assembly steps take place, using monoclonal antibodies recognizing class I molecules in different assembly states to analyze subcellular fractions of the early secretory pathway. The distribution of peptide-loaded class I molecules was more localized than the distribution of the total pool of class I molecules in the early secretory pathway. Loaded molecules colocalized with the peptide transporter, free heavy chains, and the chaperone calnexin in high density rough endoplasmic reticulum (RER) membranes. These data suggest that subunit assembly and peptide acquisition occur at the same intracellular site. Class I molecules also localized to less dense subfractions of the early secretory pathway, which contained comparatively less peptide-loaded molecules than the high density RER fractions, at steady state. Following a 15 °C temperature block, class I molecules accumulated in these less dense membrane fractions, indicating that these fractions represent the intermediate compartment where empty class I molecules are trapped in mutant cells. In the presence of cycloheximide, a pool of class I molecules recycling to the RER was detected, suggesting empty molecules recycle to acquire peptide.  相似文献   
14.
Translation initiation of hepatitis C virus (HCV) RNA is controlled by an internal ribosome entry site (IRES) contained in 5 noncoding region (NCR) and in several nucleotides of the coding region. The ability of a 25-kilodalton cellular protein (p25) to bind the HCV 5 NCR is correlated with the efficiency of translation initiation of HCV RNA, indicating that this protein plays a critical role in HCV translation (S. Fukushi, C. Kurihara, N. Ishiyama, F. B. Hoshino, A. Oya, and K. Katayama, J Virol 71, 1662–1666, 1997). We have extended the study for identification of the IRES region required for p25 binding. For this purpose, we have performed UV cross-linking competition analyses using 5- or 3- deleted mutants of the HCV 5 NCR as competitor RNAs for binding of p25 to wild-type HCV 5 NCR. Competitor RNAs lacking nucleotides (nt) 47–74 or nt 279–331 did not inhibit p25 binding to the HCV IRES, indicating that these regions are necessary for interaction of the p25 and HCV IRES. Since p25 binding was not observed in the IRES elements of encephalomyocarditis virus and poliovirus in UV cross-linking competition analyses, the p25 binding may be specific for the HCV IRES. p25 bound to the HCV IRES was detected when a purified 40S ribosomal subunit was used for UV cross-linking experiment, indicating that p25 is one of 40S ribosomal subunit proteins. These results reveal an unique interaction between the 40S ribosomal subunit and HCV IRES to contribute to translation initiation of the HCV genome.  相似文献   
15.
旋毛虫Ts87重组蛋白诱导的小鼠黏膜免疫保护性研究   总被引:1,自引:0,他引:1  
本实验探讨旋毛虫Ts87重组蛋白灌胃免疫小鼠诱导的黏膜免疫保护性作用。实验分对照组、佐剂组(霍乱毒素B亚单位组,CTB)和免疫组(CTB Ts87重组蛋白),灌胃免疫,间隔1周共免疫3次。末次免疫后第7天用400条旋毛虫感染期幼虫攻击,比较3组小鼠肠道成虫数、雌虫生殖力和肌幼虫数。且于末次免疫后第7天刮取肠黏液、取血检测特异性sIgA、IgG抗体水平。结果显示免疫组小鼠成虫减虫率、新生蚴减虫率、肌幼虫减虫率分别是81·34%、67·02%、84·49%;小鼠肠黏液sIgA水平及血清IgG水平显著高于对照组和佐剂组。结果表明Ts87重组蛋白黏膜免疫能够诱导小鼠产生抗旋毛虫的保护性免疫。灌胃免疫能显著提高肠黏液特异性sIgA水平,对促进肠道成虫的排出有明显作用。  相似文献   
16.
目的 对重组霍乱毒素B亚单位(rCTB)作为多糖蛋白结合疫苗候选载体的可行性进行分析,并对以破伤风类毒素(TT)与rCTB为蛋白载体的黏膜投递型疫茸的免疫效果进行初步探讨.方法 首先通过基因工程手段获得具有五聚体结构的rCTB.再将rCTB五聚体蛋白利用化学方法(ADH方法)与A群脑膜炎球菌多糖(GAMP)耦联,获得多糖蛋白结合物GAMP-rCTB,并将其与TT为蛋白载体的A群流脑多糖蛋白结合物(GAMP-TT)以滴鼻和注射途径免疫BALB/c小鼠,并对其进行免疫学评价.结果 以rCTB和TT为载体的A群流脑多糖蛋白结合物,通过黏膜投递途径均可在血清中产生相对较高的多糖特异性IgG抗体,在肺部盥洗液和小肠黏膜也产生了相应的特异性IgA抗体.结论 rCTB和TT均可作为黏膜投递型多糖结合疫苗的候选蛋白载体.以rCTB为载体的多糖蛋白结合物,黏膜途径可能在免疫功能方面优于注射途径.  相似文献   
17.
The location of neurons in the caudal medulla oblongata that project to the superficial or deep dorsal horn was studied in the rat, by means of retrograde labelling from confined spinal injection sites. The tracer cholera toxin subunit B was injected into laminae I–III (fuve rats) or I–V (three rats) at C4–7 spinal segments. Neurons projecting to the superficial dorsal horn were located in the dorsomedial part of the dorsal reticular nucleus ipsilaterally, the subnucleus commissuralis of the nucleus tractus solitarius bilaterally, and a region occupying the lateralmost part of the ventrolateral reticular formation between the lateral reticular nucleus and the caudal pole of the spinal trigeminal nucleus, pars caudalis, bilaterally. Neurons projecting to the deep dorsal horn, which were only labelled when laminae I–V were filled by the tracer, occurred in the dorsomedial and ventrolateral parts of the dorsal reticular nucleus and in the ventral reticular nucleus bilaterally. A few cells were located in the above described lateralmost portion of the ventrolateral reticular formation bilaterally and in the ventral portion of the ipsilateral cuneate nucleus. In the light of previous data demonstrating that dorsal horn neurons project to the dorsal reticular nucleus, the ventrolateral reticular formation, and the nucleus tractus solitarius, and that neurons in these three medullary regions are involved in pain inhibition at the spinal level, the descending projections demonstrated here suggest the occurrence of spino-medullary-spinal loops mediating the analgesic actions elicited in each nucleus upon the arrival of nociceptive input from the dorsal horn.  相似文献   
18.
We investigated the effects of the purified catalytic subunit (C subunit) of the cAMP-dependent protein kinase (A-kinase) on the cardiac Na+ channel currents. Single Na+ channel currents in guinea-pig ventricular myocytes were recorded using the patch clamp technique of the inside-out configuration. Application of C subunit decreased the peak average current and slowed the current decay, effects which were caused by decrease in the open probability of Na+ channels and increase in the first latency, whereas the unitary current amplitude and mean open times were not affected. We conclude that the cardiac Na+ channel is directly modulated by phosphorylation process through A-kinase.  相似文献   
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20.
Stargazin (γ-2) is disrupted in the ataxic and epileptic mutant mouse, stargazer (stg). The striking defect in the stg cerebellum is the lack of functional AMPA receptors on granule cells. Recently, it has been reported that γ-2 and its related molecules are crucial for the surface expression, synaptic targeting and recycling of AMPA receptors, being termed collectively as the transmembrane AMPA receptor regulatory proteins (TARPs). However, it is still unclear whether TARPs directly modulate AMPA receptor activity. Here we report that coexpression of GluR1 (GluR1) with γ-2 using HEK293 cells and Xenopus oocytes markedly enhanced glutamate-induced currents. This effect was far beyond the increase of AMPA receptor surface expression and accompanied by increased glutamate affinity and subunit cooperativity. Other member of TARPs (γ-3, γ-4, and γ-8) also enhanced the current response through the AMPA receptors. The enhancing effect by γ-2 coexpression was further observed for homomeric GluR2 (GluR2) channels, which, when expressed alone, are known to produce only a small or negligible current response. These results suggest that γ-2 not only promotes AMPA receptor surface expression but also directly modulates AMPA receptor activity.  相似文献   
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