1.Regulation of Smooth Muscle Excitability.
Journal of the Korean Continence Society 1998;2(2):7-19
No abstract available.
Muscle, Smooth*
2.PKC-Independent Stimulation of Cardiac Na+/Ca2+ Exchanger by Staurosporine.
The Korean Journal of Physiology and Pharmacology 2008;12(5):259-265
[Ca2+]i transients by reverse mode of cardiac Na+/Ca2+ exchanger (NCX1) were recorded in fura-2 loaded BHK cells with stable expression of NCX1. Repeated stimulation of reverse NCX1 produced a long-lasting decrease of Ca2+ transients ('rundown'). Rundown of NCX1 was independent of membrane PIP2 depletion. Although the activation of protein kinase C (PKC) was observed during the Ca2+ transients, neither a selective PKC inhibitor (calphostin C) nor a PKC activator (PMA) changed the degrees of rundown. By comparison, a non-specific PKC inhibitor, staurosporine (STS), reversed rundown in a dose-dependent and reversible manner. The action of STS was unaffected by pretreatment of the cells with calphostin C, PMA, or forskolin. Taken together, the results suggest that the stimulation of reverse NCX1 by STS is independent of PKC and/or PKA inhibition.
Forskolin
;
Fura-2
;
Membranes
;
Naphthalenes
;
Protein Kinase C
;
Staurosporine
3.Two types of voltage-dependent outward potassium currents in smooth muscle cells of rabbit basilar artery.
Tong Mook KANG ; Insuk SO ; Dae Yong UHM ; Ki Whan KIM
The Korean Journal of Physiology and Pharmacology 1997;1(2):169-183
We have investigated the two types of voltage-dependent outward potassium (K) currents, i.e. delayed rectifier K current (I-K(V)) and 'A-like' transient outward K current (I-to) with patch-clamp technique in single smooth muscle cells (SMCs) isolated from rabbit basilar artery, and investigated the characteristics of them. The time-courses of activation were well fitted by exponential function raised to second power (n-2) in I-K(v) and fourth power (n-4) in I-to. The activation, inactivation and recovery time courses of I-to were much faster than that of I-K(V). The steady-state activation and inactivation of I-K(V) was at the more hyperpolarized range than that of I-to contrary to the reports in other vascular SMCs. Tetraethylammonium chloride (TEA; 10 mM) markedly inhibited I-K(V) but little affected 1-to. 4-Aminopyridine (4-AP) had similar inhibitory potency on both currents. While a low concentration of Cd-2+ (0.5 mM) shifted the current-voltage relationship of I-to to the positive direction without change of maximum conductance, Cd-2+ did not cause any appreciable change for I-K(V).
4-Aminopyridine
;
Basilar Artery*
;
Muscle, Smooth*
;
Myocytes, Smooth Muscle*
;
Patch-Clamp Techniques
;
Potassium*
;
Tetraethylammonium
4.Ca2+-dependent Long-term Inactivation of Cardiac Na+/Ca2+ Exchanger.
The Korean Journal of Physiology and Pharmacology 2007;11(5):183-188
Using BHK cells with stable expression of cardiac Na+/Ca2+ exchanger (BHK-NCX1), reverse mode (i.e. Ca2+ influx mode) of NCX1 current was recorded by whole-cell patch clamp. Repeated stimulation of reverse NCX1 produced a cytosolic Ca2+-dependent long-term inactivation of the exchanger activity. The degrees of inactivation correlated with NCX1 densities of the cells and were attenuated by reduced Ca2+ influx via the reverse exchanger. The inactivation of NCX1 was attenuated by (i) inhibition of Ca2+ influx with reduced extracellular Ca2+, (ii) treatment with NCX1 blocker (Ni2+), and (iii) increase of cytoplasmic Ca2+ buffer (EGTA). In BHK-NCX1 cells transiently expressing TRPV1 channels, Ca2+ influx elicited by capsaicin produced a marked inactivation of NCX1. We suggest that cytoplasmic Ca2+ has a dual effect on NCX1 activities, and that allosteric Ca2+ activation of NCX1 can be opposed by the Ca2+-dependent long-term inactivation in intact cells.
Calcium
;
Capsaicin
;
Cytoplasm
;
Cytosol
5.Muscarinic receptor subtype controlling the carbachol-induced muscle contraction in guinea pig gastric antrum.
Jong Chul RHEE ; Dae Yong UHM ; Tong Mook KANG
The Korean Journal of Physiology and Pharmacology 2000;4(2):105-111
Stimulation of muscarinic receptors by carbachol (CCh) in the circular smooth muscle of the guinea pig gastric antrum causes muscle contraction. In the present study, muscarinic receptor subtype controlling the muscle contraction in response to CCh was studied using putative muscarinic receptor antagonists. Isometric force of the isolated circular muscle strips was measured in an organ bath. CCh contracted the muscle in a dose-dependent way, and each of the three muscarinic receptor antagonists, 4-diphenylacetoxy-N-methylpeperdine methiodide (4-DAMP), methoctramine and pirenzepine shifted the concentration-response curves to the right without significantly reducing the maximum force. The affinities of the muscarinic antagonists (pA2 values) obtained from Schild plot analysis were 10.15, 7.05 and 6.84 for 4-DAMP, methoctramine and pirenzepine, respectively. These results suggest that the M3-subtype mainly mediate the muscle contraction in response to CCh in guinea pig gastric antrum.
Animals
;
Baths
;
Carbachol
;
Guinea Pigs*
;
Guinea*
;
Muscarinic Antagonists
;
Muscle Contraction*
;
Muscle, Smooth
;
Pirenzepine
;
Pyloric Antrum*
;
Receptors, Muscarinic*
6.Effects of Propofol on the Cytosolic Calcium Concentration of the Astrocytoma Cells.
Young Soon CHOI ; Tong Mook KANG ; Myung Hee KIM ; Yong Keun KWAK ; Huhn CHOE ; He Sun SONG
Korean Journal of Anesthesiology 2001;41(3):337-346
BACKGROUND: Propofol is a widely-used intravenous anesthetic with a rapid onset, short duration of action and rapid elimination but the molecular mechanisms of action are not completely understood. Not only neurons but astrocytes are potential substrates for anesthetics, specifically for propofol. Intracellular calcium ion ([Ca2 ]i) is known to play a key role in the transduction and propagation of various chemical signals in astrocytes. METHODS: In the present study, the effects of propofol on the intracellular calcium concentration of astrocytoma cells by using a fura-2 fluorescence spectroscopy was investigated. RESULTS: In an isotonic standard solution, propofol (50 and 500microM) produced a transient increase in [Ca2 ]i while the intralipid did not change [Ca2 ]i. In several cells (20%), a transient increase in [Ca2 ]i was followed by sustained elevation which was sensitive to depletion of external calcium. A propofol-induced increase in [Ca2 ]i was not altered by an L-type calcium channel blocker (nifedipine 2microM). In cells bathed in a Ca2 -free external solution, a transient increase in [Ca2 ]i was observed. After the pretreatment of cyclopiazonic acid (CPA), an endoplasmic reticulum Ca2 -ATPase blocker, propofol 500microM did not produce any significant increase in [Ca2 ]i. Carbachol, which is known to release calcium from the inositol 1,4,5-triphosphate (IP3)-induced calcium release (IICR) stores, prevented the [Ca2 ]i increase by propofol and vice versa. High concentrations of caffeine (10 mM), which release calcium from the calcium-induced calcium release (CICR) stores, had no effect on [Ca2 ]i. CONCLUSIONS: From the above results, it is suggested that an increase in [Ca2 ]i by propofol in astrocytoma cells is mainly due to calcium release from the IICR stores.
Anesthetics
;
Astrocytes
;
Astrocytoma*
;
Baths
;
Caffeine
;
Calcium Channels, L-Type
;
Calcium*
;
Carbachol
;
Cytosol*
;
Endoplasmic Reticulum
;
Fura-2
;
Inositol 1,4,5-Trisphosphate
;
Neurons
;
Propofol*
;
Spectrometry, Fluorescence
7.Visceral Hypersensitivity and Altered Colonic Motility in Type 2 Diabetic Rat.
Tae Sik SUNG ; Jun Ho LA ; Tong Mook KANG ; Tae Wan KIM ; Il Suk YANG
Journal of Neurogastroenterology and Motility 2015;21(4):581-588
BACKGROUND/AIMS: Abnormal visceral sensitivity and disordered motility are common in patients with diabetes mellitus. The purpose of the present study was to investigate whether visceral sensation and bowel motility were altered in a rat model of type 2 diabetes mellitus accompanied by weight loss. METHODS: A type 2 diabetic rat model in adulthood was developed by administrating streptozotocin (STZ; 90 mg/kg, i.p.) to neonatal rats. Eight weeks after STZ administration, rats with blood glucose level of 200 mg/dL or higher were selected and used as diabetic group (n = 35) in this study. Abdominal withdrawal reflex and arterial pulse rate were measured to examine visceral nociception induced by colorectal distension (0.1-1.0 mL). The amplitude, frequency, and area under the curve (AUC) of spontaneous phasic contractions of colonic circular muscles were recorded in vitro to examine colonic motility. RESULTS: STZ-treated diabetic rats gained significantly less weight for 8 weeks than control (P < 0.01). Forty-eight percent of the diabetic rats showed enhanced visceral nociceptive response to colorectal distension. Diabetic rats did not differ from control rats in colorectal compliance. However, the frequency and AUC, not the amplitude, of colonic spontaneous contraction in vitro was significantly decreased in diabetic rats compared to control rats (P < 0.01 in frequency and P < 0.05 in AUC). CONCLUSIONS: These results demonstrate visceral hypersensitivity and colonic dysmotility in a rat model of type 2 diabetes mellitus accompanied by weight loss.
Animals
;
Area Under Curve
;
Blood Glucose
;
Colon*
;
Compliance
;
Diabetes Mellitus
;
Diabetes Mellitus, Type 2
;
Heart Rate
;
Humans
;
Hypersensitivity*
;
Models, Animal
;
Muscles
;
Nociception
;
Rats*
;
Reflex
;
Sensation
;
Streptozocin
;
Weight Loss
8.CD40 Co-stimulation Inhibits Sustained BCR-induced Ca2+ Signaling in Response to Long-term Antigenic Stimulation of Immature B Cells.
Yen Hoang NGUYEN ; Ki Young LEE ; Tae Jin KIM ; Sung Joon KIM ; Tong Mook KANG
The Korean Journal of Physiology and Pharmacology 2011;15(3):179-187
Regulation of B cell receptor (BCR)-induced Ca2+ signaling by CD40 co-stimulation was compared in long-term BCR-stimulated immature (WEHI-231) and mature (Bal-17) B cells. In response to long-term pre-stimulation of immature WEHI-231 cells to alpha-IgM antibody (0.5~48 hr), the initial transient decrease in BCR-induced [Ca2+]i was followed by spontaneous recovery to control level within 24 hr. The recovery of Ca2+ signaling in WEHI-231 cells was not due to restoration of internalized receptor but instead to an increase in the levels of PLCgamma2 and IP3R-3. CD40 co-stimulation of WEHI-231 cells prevented BCR-induced cell cycle arrest and apoptosis, and it strongly inhibited the recovery of BCR-induced Ca2+ signaling. CD40 co-stimulation also enhanced BCR internalization and reduced expression of PLCgamma2 and IP3R-3. Pre-treatment of WEHI-231 cells with the antioxidant N-acetyl-L-cysteine (NAC) strongly inhibited CD40-mediated prevention of the recovery of Ca2+ signaling. In contrast to immature WEHI-231 cells, identical long-term alpha-IgM pre-stimulation of mature Bal-17 cells abolished the increase in BCR-induced [Ca2+]i, regardless of CD40 co-stimulation. These results suggest that CD40-mediated signaling prevents antigen-induced cell cycle arrest and apoptosis of immature B cells through inhibition of sustained BCR-induced Ca2+ signaling.
Acetylcysteine
;
Apoptosis
;
B-Lymphocytes
;
Cell Cycle Checkpoints
;
Phospholipase C gamma
;
Precursor Cells, B-Lymphoid
;
Reactive Oxygen Species
9.Deficiency of Anoctamin 5/TMEM16E causes nuclear positioning defect and impairs Ca²⁺ signaling of differentiated C2C12 myotubes
Tam Thi Thanh PHUONG ; Jieun AN ; Sun Hwa PARK ; Ami KIM ; Hyun Bin CHOI ; Tong Mook KANG
The Korean Journal of Physiology and Pharmacology 2019;23(6):539-547
Anoctamin 5 (ANO5)/TMEM16E belongs to a member of the ANO/TMEM16 family member of anion channels. However, it is a matter of debate whether ANO5 functions as a genuine plasma membrane chloride channel. It has been recognized that mutations in the ANO5 gene cause many skeletal muscle diseases such as limb girdle muscular dystrophy type 2L (LGMD2L) and Miyoshi muscular dystrophy type 3 (MMD3) in human. However, the molecular mechanisms of the skeletal myopathies caused by ANO5 defects are poorly understood. To understand the role of ANO5 in skeletal muscle development and function, we silenced the ANO5 gene in C2C12 myoblasts and evaluated whether it impairs myogenesis and myotube function. ANO5 knockdown (ANO5-KD) by shRNA resulted in clustered or aggregated nuclei at the body of myotubes without affecting differentiation or myotube formation. Nuclear positioning defect of ANO5-KD myotubes was accompanied with reduced expression of Kif5b protein, a kinesin-related motor protein that controls nuclear transport during myogenesis. ANO5-KD impaired depolarization-induced [Ca²⁺]i transient and reduced sarcoplasmic reticulum (SR) Ca²⁺ storage. ANO5-KD resulted in reduced protein expression of the dihydropyridine receptor (DHPR) and SR Ca²⁺-ATPase subtype 1. In addition, ANO5-KD compromised co-localization between DHPR and ryanodine receptor subtype 1. It is concluded that ANO5-KD causes nuclear positioning defect by reduction of Kif5b expression, and compromises Ca²⁺ signaling by downregulating the expression of DHPR and SERCA proteins.
Active Transport, Cell Nucleus
;
Calcium Channels, L-Type
;
Cell Membrane
;
Chloride Channels
;
Humans
;
Muscle Development
;
Muscle Fibers, Skeletal
;
Muscle, Skeletal
;
Muscular Diseases
;
Muscular Dystrophies
;
Muscular Dystrophies, Limb-Girdle
;
Myoblasts
;
RNA, Small Interfering
;
Ryanodine Receptor Calcium Release Channel
;
Sarcoplasmic Reticulum
10.Nanoscale imaging of rat atrial myocytes by scanning ion conductance microscopy reveals heterogeneity of T-tubule openings and ultrastructure of the cell membrane
Sun Hwa PARK ; Ami KIM ; Jieun AN ; Hyun Sung CHO ; Tong Mook KANG
The Korean Journal of Physiology and Pharmacology 2020;24(6):529-543
In contrast to ventricular myocytes, the structural and functional importance of atrial transverse tubules (T-tubules) is not fully understood. Therefore, we investigated the ultrastructure of T-tubules of living rat atrial myocytes in comparison with ventricular myocytes. Nanoscale cell surface imaging by scanning ion conductance microscopy (SICM) was accompanied by confocal imaging of intracellular T-tubule network, and the effect of removal of T-tubules on atrial excitation-contraction coupling (EC-coupling) was observed. By SICM imaging, we classified atrial cell surface into 4 subtypes. About 38% of atrial myocytes had smooth cell surface with no clear T-tubule openings and intracellular T-tubules (smooth-type). In 33% of cells, we found a novel membrane nanostructure running in the direction of cell length and named it 'longitudinal fissures' (LFs-type). Interestingly, T-tubule openings were often found inside the LFs. About 17% of atrial cells resembled ventricular myocytes, but they had smaller T-tubule openings and a lower Z-groove ratio than the ventricle (ventricular-type). The remaining 12% of cells showed a mixed structure of each subtype (mixed-type). The LFs-, ventricular-, and mixed-type had an appreciable amount of reticular form of intracellular T-tubules. Formamide-induced detubulation effectively removed atrial T-tubules, which was confirmed by both confocal images and decreased cell capacitance. However, the LFs remained intact after detubulation. Detubulation reduced action potential duration and L-type Ca2+ channel (LTCC) density, and prolonged relaxation time of the myocytes. Taken together, we observed heterogeneity of rat atrial T-tubules and membranous ultrastructure, and the alteration of atrial EC-coupling by disruption of T-tubules.