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Biomedical subjects

Y Qu

Publications and source records attributed to Y Qu.

At least 37 records · Page 2Linked to original sources

Down-regulation of L-type calcium channel in pups born to 52 kDa SSA/Ro immunized rabbits.

Congenital heart block is considered a model of passively acquired autoimmune disease in which the mother generates anti-SSA/Ro and/or anti-SSB/La antibodies that cross the placenta and presumably injure the heart of developing fetus. CHB is accompanied by ECG abnormalities including AV block, sinus bradycardia, and ventricular dysfunction. Our previous data indicate that these abnormalities are caused by maternal autoantibody-mediated disturbance of L-type Ca channels. To investigate the consequence of chronic exposure of L-type Ca channels in newborn pups to maternal autoantibodies during pregnancy, we immunized female rabbits with human 52 kDa-SSA/Ro (Ro52) recombinant protein. ECG revealed that pups from the immunized group had varying degrees of conduction defects. In addition, I(CaL) density and protein were reduced in hearts of pups from the immunized group. Sera and purified IgG from immunized rabbits inhibited I(Ba) recorded from oocytes with expressed alpha(1C) and beta(2a) subunits of L-type Ca channel. Pups born to Ro52 immunized mothers exhibited down-regulation of L-type calcium channels in heart. The data provide new insight into the pathogenesis of congenital heart block.

Animals↗

Evidence for functional role of epsilonPKC isozyme in the regulation of cardiac Na(+) channels.

Investigation of the role of individual protein kinase C (PKC) isozymes in the regulation of Na(+) channels has been largely limited by the lack of isozyme-selective modulators. Here we used a novel peptide-specific activator (epsilonV1-7) of epsilonPKC and other peptide isozyme-specific inhibitors in addition to the general PKC activator phorbol 12-myristate 13-acetate (PMA) to dissect the role of individual PKCs in the regulation of the human cardiac Na(+) channel hH1, heterologously expressed in Xenopus oocytes. Peptides were injected individually or in combination into the oocyte. Whole cell Na(+) current (I(Na)) was recorded using two-electrode voltage clamp. epsilonV1-7 (100 nM) and PMA (100 nM) inhibited I(Na) by 31 +/- 5% and 44 +/- 8% (at -20 mV), respectively. These effects were not seen with the scrambled peptide for epsilonV1-7 (100 nM) or the PMA analog 4alpha-phorbol 12,13-didecanoate (100 nM). However, epsilonV1-7- and PMA-induced I(Na) inhibition was abolished by epsilonV1-2, a peptide-specific antagonist of epsilonPKC. Furthermore, PMA-induced I(Na) inhibition was not altered by 100 nM peptide-specific inhibitors for alpha-, beta-, delta-, or etaPKC. PMA and epsilonV1-7 induced translocation of epsilonPKC from soluble to particulate fraction in Xenopus oocytes. This translocation was antagonized by epsilonV1-2. In native rat ventricular myocytes, PMA and epsilonV1-7 also inhibited I(Na); this inhibition was antagonized by epsilonV1-2. In conclusion, the results provide evidence for selective regulation of cardiac Na(+) channels by epsilonPKC isozyme.

Animals↗

Gene expression of SERCA2a and L- and T-type Ca channels during human heart development.

In this study we report, for the first time, on the gene expression of human cardiac SERCA2a, L-type (alpha(1C)) and T-type (alpha(1H)) Ca channels during development, using RNase protection assay, relative quantitative RT-PCR and Western blot. Human hearts during early gestation (8- to 20-wk gestation), neonatal (1- to 4-d-old) and adult (18- to 48-year-old) stages were used. The results show that T-type Ca channel alpha(1H) subunit mRNA decreased and that L-type Ca channel alpha(1C) subunit mRNA increased with development. While the levels of sarcoplasmic reticulum ATPase (SERCA2a) mRNA did not significantly change with development, its protein levels increased with development. In conclusion, SERCA2a, L-type and T-type Ca channel transcripts were detected as early as 8-wk gestation. Defining the profile of Ca handling proteins during development is important to the understanding of excitation-contraction (EC)-coupling of the developing human heart.

Adult↗

[Proliferation properties and telomerase activity of human embryonic tendon cells transformed by ptsA58H plasmid].

OBJECTIVE: To analysis the proliferation properties and telomerase activity of human embryonic tendon cells transformed by ptsA58H plasmid cultured in vitro continuously. METHODS: The 40th, 70th, and 75th passages of transformed human embryonic tendon cells (THETC) were adopted. The collagen secretion of THETC was detected by immunohistochemical methods, the growth curve of different passages of THETC was compared, and chromosome karyotype was analyzed. Total RNA of THETC were extracted to detect human telomerase reverse transcriptase (hTERT) mRNA expression by RT-PCR technique. RESULTS: When THETC were subcultured to 70 passages, the morphological characteristics of cells changed and began replicative senescence. THETC still could secret type I collagen normally. The chromosome of THETC was heteroploid (2n = 94). There were no hTERT mRNA expression. CONCLUSION: SV40 transfection can not make human embryonic tendon cells immortalization, on the other hand, human embryonic tendon cells transformed by ptsA58H plasmid has no tendency of malignant transformation.

Cell Division↗

The cAMP-mediated protein kinase signal transduction pathway is involved in the pyrogenic effect of CRH in rats.

OBJECTIVE: To determine whether the cyclic adenosine monophosphate (cAMP) mediated protein kinase signal transduction pathway is involved in the pyrogenic action of corticotropin releasing hormone (CRH) in rats. METHODS: Corticotropin releasing hormone, 2',3'-dideoxyadenosine (DDA) and adenosine-3',5'-(cyclic) monophosphorothionate, Rp-Isomer (Rp-cAMPS), were administered intracerebroventricularly (i.c.v.). The colonic temperature was measured using a thermistor, and the content of cAMP in the hypothalamus was determined by radioimmunoassay. Hypothalamic incubation was used to assess the effects of CRH on the content of cAMP in the hypothalamus in vitro. RESULTS: Microinjection (i.c.v.) of CRH (2.5 micrograms, 5.0 micrograms and 10 micrograms) caused increases in colonic temperature and the hypothalamus cAMP level in conscious rats. CRH increased hypothalamus cAMP level in vitro. The pyrogenic effects of CRH were abolished or markedly inhibited by prior injection (i.c.v.) of an adenylate cyclase inhibitor, DDA (30 micrograms), or an inhibitor of cAMP-dependent protein kinase, Rp-cAMPS (15 micrograms). CONCLUSION: cAMP mediates the pyrogenic action of centrally administered of CRH in rats, and protein kinase A may play an important role in the central CRH-induced fever. The cAMP-dependent protein kinase signal transduction pathway may be involved in the central mechanisms of the pyrogenic action of CRH in rats.

Animals↗

[Clinicopathological features of malignant ovarian neoplasms arising from ovarian endometriosis: a report of 26 cases].

OBJECTIVE: To clarify the features of malignant ovarian neoplasms arising from ovarian endometriosis. METHODS: A total of 26 women with malignant ovarian neoplasms arising from ovarian endometriosis were analyzed retrospectively. RESULTS: Dysmenorrhea and pelvic mass were the most common clinical features. Among 18 cases who underwent B-ultrasound or color doppler ultrasound examination, solid foci in the pelvic masses were found in 10 cases. The main histologic types of ovarian malignancy were endometrioid adenocarcinoma and clear cell carcinoma. Microscopically atypical endometriosis with the tumors were found in 15 cases. International Federation of Gynecology and Obstetrics stage: stage I 21(81%) cases, stage II 3(12%) cases, stage III 2 (8%) cases. CONCLUSIONS: Clinical diagnosis of malignant ovarian neoplasms arising from ovarian endometriosis in early stage is difficult, and B-ultrasound examination is more valuable for diagnosis. It is suggested that close serutiny of endometrial hyperplasia, cellular atypia and malignancy in ovarian endometriosis be essential to understand the origin and development of malignant neoplasms arising from ovarian endometriosis.

Adult↗

[Effect of 3'-UTR of EG I from Trichoderma reesei on its gene expression in Saccharomyces cerevisiae].

Several industrial yeast are developed as ideal expression hosts for the production of the commercially useful proteins. The expression levels in yeast cells of the heterologous proteins are affected by the regulation factors of the genes themselves. The full-length cDNA coding for EG I from Trichoderma reesei, the cellulose-degrading filamentous fungus, was expressed in Saccharomyces cerevisiae H158. EG I produced by the recombinant S. cerevisiae exhibits maximal activity at 50 degrees C-60 degrees C, pH 5.0. It was observed that removal of the 3'-untranslated region (3'-UTR) from EG I cDNA resulted in no active EG I produced by recombinant yeast. RT-PCR analysis indicated that unlike the yeast cells harboring full-length EG I cDNA, there was no detectable EG I mRNA in the yeast cells harboring EG I cDNA without 3'-UTR. The data suggested that 3'-UTR is important for the expression of EG I in Saccharomyces cerevisiae.

3' Untranslated Regions↗

[Cloning and expression of Trichoderma reesei endoglucanase III (EG III) gene in Saccharomyces cerevasiae].

Using Congo red-staining method, one positive clone with CMCase activity was isolated from the Trichoderma ressei cDNA gene bank constructed in Saccharomyces cerevasiae. Sequencing result showed that the 1.5 kb-length DNA fragment inserted in the recombinant plasmid encoded EG III gene from T. reesei. Enzymatic characterization of the EG III produced by recombinant S. cerevasiae was analyzed. The experimental results indicated that the optimum pH and temperature for EG III are 5.0 and 60 degrees C, respectively. The effects of secretory system components SSO 2 and SEB1 of S. cerevisiae on EG III secretion were examined. The results indicated that the amount of EG III secreted by the strain with SSO 2-overexpression was highest among the different recombinant S. cerevisiae strains, showed that SSO 2 is a rate-limiting component of the secretory machinery in the process of EG III secretion. Furthermore, the EG III expression level was increased 5.3 times by deletion. Furthermore, the EG III expression level was increased 5.3 times by deletion of the 98 bp in 5' untranslated region of eg3 mRNA sequence. This result suggested that the regulation region could exist in the 5' untranslated region of EG III mRNA, which is recognized by the gene expression related factors of S. cerevasiae.

Cellulase↗

[Empty nose syndrome].

OBJECTIVE: The aim of this article is to present the concept of empty nose syndrome(ENS) and help ENT doctors take care of regular nasal turbinate surgery. METHODS: Fourteen patients who was diagnosed as ENS in our department were reviewed retrospectively. All patients had undergone various forms of nasal surgery (all had had turbinectomy). Their age ranged from 13 to 52 years. All patients were treated conservatively, among these patients 5 subjects who had more serious symptoms received submucous and subperiostal nasal implantation with ilium. RESULTS: All patients had nasal obstruction and dryness of nasal cavity, nasopharynx and oto-pharynx in 6 months--5 years after their first nasal surgery, some presented symptoms of depression. Nasoscope examination showed all patients had a cylindrically enlarged nasal cavity. Conservative treatment was effective in most cases. The effectiveness of operative treatment was encouraging during short-term follow-up. CONCLUSION: Extensive turbinectomy may cause secondary nasal mucosal atrophy and a series of subsequent symptoms. The presentation of this concept is to remind the ENT doctors prudently performing turbinectomy to avoid the occurrence of irreversible injury to the nasal cavity.

Adolescent↗

Tetrasomy 15q25-->qter: cytogenetic and molecular characterization of an analphoid supernumerary marker chromosome.

Tetrasomy for the distal long arm of chromosome 15 is a rare finding. It has been previously described in seven patients, all of whom had a supernumerary marker chromosome (SMC) derived from distal 15q. These SMC contained no apparent centromeres (C-band/alpha-satellite negative), and belong to a novel class of SMC with neocentromeres. We present the oldest surviving patient with tetrasomy for distal 15q. The proposita was a 10-year-old girl with moderate to severe mental retardation, absent speech, hypotonia, minor facial anomalies, unusual digits, and pigmentation anomalies. Mosaicism for a symmetrical SMC was identified in metaphases from lymphocytes and fibroblasts. Parental karyotypes were normal, indicating a de novo origin for the SMC. FISH with a whole chromosome paint for chromosome 15 showed that the SMC was derived entirely from chromosome 15. However, C-banding and FISH with chromosome 15 probes D15Z1, D15S11, SNRPN, and PML were all negative. FISH with the FES probe at 15q26 showed hybridization to both ends of the SMC. The marker was interpreted as an analphoid inverted duplication of 15q25-->qter containing a presumed neocentromere. Previous molecular studies suggested either a mitotic or paternal meiotic origin for these distal 15q SMC. However, molecular analysis with chromosome 15 polymorphic markers showed that the analphoid SMC(15) in the proposita originated from a maternal meiotic error. The origins and mechanisms involved in formation of these distal 15q SMC appear to be more diverse than for the proximal pseudodicentic SMC(15).

Abnormalities, Multiple↗

Synthesis, characterization, and cytotoxicity of trifunctional dinuclear platinum complexes: comparison of effects of geometry and polyfunctionality on biological activity.

The synthesis of two new isomeric trifunctional dinuclear platinum complexes of formula [¿PtCl(NH(3))(2)¿micro-NH(2)(CH(2))(6)NH(2)-¿PtCl(2)(N H(3))¿](+) (1, 2/c,c and 1,2/t,c) is reported. Their biological activity in selected human tumor cell lines sensitive and resistant to CDDP (cisplatin, cis-[Pt(NH(3))(2)Cl(2)]) is described and compared with the profile for their bifunctional analogues, [¿cis/trans-PtCl(NH(3))(2)¿(2)micro-NH(2)(CH(2))(6)NH(2)](2+ ). The trifunctional dinuclear platinum complexes showed a unique profile of cytotoxicity against human cancer cell lines, with low resistance factors in A2780, CH1, and 41M cell lines. The resistance factor is dependent on the geometry of the Pt coordination spheres - suggesting that these may be associated with DNA-binding modes. Retention of activity against CDDP-resistant cell lines and a different spectrum of activity compared to CDDP and also within different classes of polynuclear platinum complexes suggest that not only are they mechanistically different from mononuclear platinum complexes but also each individual class of polynuclear platinum structure may have its own unique character.

Amines↗

Sampling extracellular aspartate, glutamate and gamma-aminobutyric acid in striate cortex of awake cat by in vivo microdialysis: surgical and methodological aspects.

A method which permits repeated microdialysis in the cortical layers of area 17 of the awake cat is described. Under visual control through a surgical microscope and using a stereotactic instrument, four probe guides are permanently implanted in area 17 of one hemisphere of the anesthetized animal and two fixation bars are mounted on the skull to allow fixation of the cat in a stereotactic frame. The implantation of four probe guides in the same hemisphere allows simultaneous sampling from different cortical regions serving different parts of the visual field. A removable transparent cover protects the probe guides. After recovery from surgery the awake cats are trained to adapt to a fixation of 5 h in a stereotaxic apparatus. Once adapted to that situation, the cats are ready for microdialysis experiments without anesthesia. The day of the experiment, the awake animal was fixed in the stereotactic frame and the probes inserted into the guides. To test the validity of the method, the basal efflux and the depolarization efflux, triggered by the addition of 65 mM K(+) to the artificial cerebrospinal fluid, of the amino acids aspartate, glutamate and gamma-aminobutyric acid are measured by two HPLC-electrochemical detection methods. The exact localization of the probes and the reaction of the surrounding tissue is studied using immunocytochemistry for glutamate and glial fibrilary acidic protein. Our neurochemical and morphological results suggest the feasibility of multiple and repeated probe insertions for microdialysis experiments in the cerebral cortex of awake and behaving cat. This method provides a new tool to investigate the cortical plasticity.

Animals↗

Embryonic stem cells differentiate into oligodendrocytes and myelinate in culture and after spinal cord transplantation.

Demyelination contributes to the loss of function consequent to central nervous system (CNS) injury. Enhanced remyelination through transplantation of myelin-producing cells may offer a pragmatic approach to restoring meaningful neurological function. An unlimited source of cells suitable for such transplantation therapy can be derived from embryonic stem (ES) cells, which are both pluripotent and genetically flexible. In this paper we show that oligodendrocyte cultures can be reliably produced from retinoic acid-induced ES cells and that these oligodendrocytes can myelinate axons in vitro. Methods were further developed for generating highly enriched cultures of oligodendrocytes through an additional culturing step, producing an intermediate "oligosphere" stage. To test whether ES cells can survive, migrate, and differentiate into mature myelin-producing cells in areas of demyelination in the adult CNS, ES cells were transplanted into the dorsal columns of adult rat spinal cord 3 days after chemical demyelination. In the demyelination site, large numbers of ES cells survived and differentiated primarily into mature oligodendrocytes that were capable of myelinating axons. Furthermore, when oligosphere cells were transplanted into the spinal cords of myelin-deficient shiverer (shi/shi) mutant mice, the ES cell-derived oligodendrocytes migrated into the host tissue, produced myelin and myelinated host axons. These studies demonstrate the ability of ES cell-derived oligodendrocytes to myelinate axons in culture and to replace lost myelin in the injured adult CNS. Transplantation of ES cells may be a practical approach to treatment of primary and secondary demyelinating diseases in the adult CNS.

Animals↗

Potent blockade of sodium channels and protection of brain tissue from ischemia by BIII 890 CL.

We have synthesized a new benzomorphan derivative, 2R-[2alpha,3(S*), 6alpha]-1,2,3,4,5,6-hexahydro-6,11, 11-trimethyl-3-[2-(phenylmethoxy)propyl]-2, 6-methano-3-benzazocin-10-ol hydrochloride (BIII 890 CL), which displaced [(3)H]batrachotoxinin A-20alpha-benzoate from neurotoxin receptor site 2 of the Na(+) channel in rat brain synaptosomes (IC(50) = 49 nM), but exhibited only low affinity for 65 other receptors and ion channels. BIII 890 CL inhibited Na(+) channels in cells transfected with type IIA Na(+) channel alpha subunits and shifted steady-state inactivation curves to more negative potentials. The IC(50) value for the inactivated Na(+) channel was much lower (77 nM) than for Na(+) channels in the resting state (18 microM). Point mutations F1764A and Y1771A in transmembrane segment S6 in domain IV of the alpha subunit reduced the voltage- and frequency-dependent block, findings which suggest that BIII 890 CL binds to the local anesthetic receptor site in the pore. BIII 890 CL inhibited veratridine-induced glutamate release in brain slices, as well as glutamate release and neurotoxicity in cultured cortical neurons. BIII 890 CL (3-30 mg/kg s.c.) reduced lesion size in mice and rats when administered 5 min after permanent focal cerebral ischemia at doses that did not impair motor coordination. In contrast to many other agents, BIII 890 CL was neuroprotective in both cortical and subcortical regions of the rat brain. Our results demonstrate that BIII 890 CL is a potent, selective, and highly use-dependent Na(+) channel blocker that protects brain tissue from the deleterious effects of focal cerebral ischemia in rodents.

Animals↗

Equilibrium and kinetic studies of the aquation of the dinuclear platinum complex [[trans-PtCl(NH3)2]2(mu-NH2(CH2)6NH2)]2+: pKa determinations of aqua ligands via [1H,15N] NMR spectroscopy.

By the use of [1H,15N] heteronuclear single quantum coherence (HSQC) 2D NMR spectroscopy and electrochemical methods we have determined the hydrolysis profile of the bifunctional dinuclear platinum complex [[trans-PtCl(15NH3)2]2(mu-15NH2(CH2)(6)15NH2)]2+ (1,1/t,t (n = 6), 15N-1), the prototype of a novel class of potential antitumor complexes. Reported are estimates for the rate and equilibrium constants for the first and second aquation steps, together with the acid dissociation constant (pKa1 approximately pKa2 approximately pKa3). The equilibrium constants determined by NMR at 25 and 37 degrees C (I = 0.1 M) were similar, pK1 approximately pK2 = 3.9 +/- 0.2, and from a chloride release experiment at 37 degrees C the values were found to be pK1 = 4.11 +/- 0.05 and pK2 = 4.2 +/- 0.5. The forward and reverse rate constants for aquation determined from this chloride release experiment were k1 = (8.5 +/- 0.3) x 10(-5) s-1 and k-1 = 0.91 +/- 0.06 M-1 s-1, where the model assumed that all the liberated chloride came from 1. When the second aquation step was also taken into account, the rate constants were k1 = (7.9 +/- 0.2) x 10(-5) s-1, k-1 = 1.18 +/- 0.06 M-1 s-1, k2 = (10.6 +/- 3.0) x 10(-4) s-1, k-2 = 1.5 +/- 0.6 M-1 s-1. The rate constants compare favorably with other complexes with the [PtCl(am(m)ine)3]+ moiety and indicate that the equilibrium of all these species favors the chloro form. A pKa value of 5.62 was determined for the diaquated species [[trans-Pt(15NH3)2(H2O)]2(mu-15NH2(CH2)(6)15NH2)]4+ (3) using [1H,15N] HSQC NMR spectroscopy. The speciation profile of 1 and its hydrolysis products under physiological conditions is explored.

Cisplatin↗

Gene expression of Na+/Ca2+ exchanger during development in human heart.

OBJECTIVE: In immature animal hearts, lower activity of sarcoplasmic reticulum and lower densities of Ca2+ channels highlight the potentially vital role of the Na+/Ca2+ exchanger (NCX) to excitation-contraction coupling. To date, studies on NCX expression have been restricted to late developmental stages. The distribution and gene expression of NCX during early ontogeny is not known, especially in humans. In the present report, we systematically characterized changes in NCX gene expression in human heart during development, with particular emphasis in early ontogeny. METHODS: Human hearts during early gestation (9- to 20-week gestation), neonatal (1 to 2 days after birth) and adulthood (18-40 years old) were used. NCX mRNA levels were studied using RNase Protection Assay (RPA) and NCX protein levels were assessed by Western blot. Wet weight was also used as the tissue base. Immunolocalization studies using confocal microscopy were performed in isolated fetal cardiac myocytes. RESULTS: Normalization of NCX mRNA derived from ventricles against an early gestational age (10-week gestation) shows that NCX mRNA levels nominally increased from 1 to 1.13 at 19-week gestation then decreased to 0.74 (P < 0.05) at neonate and further decreased to 0.23 (P < 0.05) at adult stages. NCX protein levels increased from 1 at 9-week gestation to 3 (P < 0.05) at 20-week gestation and then decreased to 1.8 (P < 0.05) at neonate and to 1.87 (P < 0.05) at adult stages. Confocal imaging of fetal cardiac myocytes revealed intense homogeneous membrane staining and abundance of NCX protein at this stage. CONCLUSIONS: The data demonstrate changes in NCX transcript and NCX protein levels as well as total RNA and proteins during human heart development. Per wet weight, NCX mRNA was 4.5 times greater at early fetal than adult stages and NCX protein was 2 times greater at adult than the early fetal stage indicating considerable post-transcriptional regulation. These findings provide new insights into the understanding of temporal changes in NCX in the developing heart at the gene level. The functional significance remains to be determined.

Blotting, Western↗

Effect of partial sensory deprivation on monoaminergic neuromodulators in striate cortex of adult cat.

The role of monoaminergic neuromodulators in the reorganization of cortical topography following limited sensory deprivation in the adult cat was investigated. The total concentrations of dopamine, noradrenaline, serotonin and their major metabolites were measured in the visual cortex of both normal control and experimental animals using microbore high-performance liquid chromatography coupled with electrochemical detection. The experimental animals were subjected to a binocular retinal lesion corresponding to the central 10 degrees of vision and killed two weeks post-lesion. The sensory deprivation was confirmed in area 17 by measuring immediate-early gene zif-268 messenger RNA expression. Following the retinal lesion, the total concentrations of noradrenaline and dopamine were significantly higher in the non-deprived cortex of retinal lesion cats than in the deprived cortex of retinal lesion cats and the cortex of normal animals. This pattern follows the release of the excitatory neurotransmitter glutamate under the same conditions. Serotonin levels were significantly lower in the deprived cortex, and its metabolite 5-hydroxyindole-3-acetic acid was significantly higher in the non-deprived cortex than in deprived cortex and normal cortex. From these results, we suggest that the modulation of noradrenaline, dopamine and serotonin is regulated by visual afferent activity.

Animals↗

A sodium channel signaling complex: modulation by associated receptor protein tyrosine phosphatase beta.

Voltage-gated sodium channels in brain neurons were found to associate with receptor protein tyrosine phosphatase beta (RPTPbeta) and its catalytically inactive, secreted isoform phosphacan, and this interaction was regulated during development. Both the extracellular domain and the intracellular catalytic domain of RPTPbeta interacted with sodium channels. Sodium channels were tyrosine phosphorylated and were modulated by the associated catalytic domains of RPTPbeta. Dephosphorylation slowed sodium channel inactivation, positively shifted its voltage dependence, and increased whole-cell sodium current. Our results define a sodium channel signaling complex containing RPTPbeta, which acts to regulate sodium channel modulation by tyrosine phosphorylation.

Animals↗