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Sung Jin Park

Publications and source records attributed to Sung Jin Park.

10 recordsLinked to original sources

Identification and classification of ion-channels across the tree of life provide functional insights into understudied CALHM channels.

The ion channel (IC) genes encoded in the human genome play fundamental roles in cellular functions and disease and are one of the largest classes of druggable proteins. However, limited knowledge of the diverse molecular and cellular functions carried out by ICs presents a major bottleneck in developing selective chemical probes for modulating their functions in disease states. The wealth of sequence data available on ICs from diverse organisms provides a valuable source of untapped information for illuminating the unique modes of channel regulation and functional specialization. However, the extensive diversification of IC sequences and the lack of a unified resource present a challenge in effectively using existing data for IC research. Here, we perform integrative mining of available sequence, structure, and functional data on 419 human ICs across disparate sources, including extensive literature mining by leveraging advances in large language models to annotate and curate the full complement of the "channelome". We employ a well-established orthology inference approach to identify and extend the IC orthologs across diverse organisms to above 48,000. We show that the depth of conservation and taxonomic representation of IC sequences can further be translated to functional similarities by clustering them into functionally relevant groups, which can be used for downstream functional prediction on understudied members. We demonstrate this by delineating co-conserved patterns characteristic of the understudied family of the Calcium Homeostasis Modulator (CALHM) family of ICs. Through mutational analysis of co-conserved residues altered in human diseases and electrophysiological studies, we show that these evolutionarily-constrained residues play an important role in channel gating functions. Thus, by providing new tools and resources for performing large comparative analyses on ICs, this study addresses the unique needs of the IC community and provides the groundwork for accelerating the functional characterization of dark channels for therapeutic intervention.

CALHM1↗

Toxicity and tissue distribution of magnetic nanoparticles in mice.

The development of technology enables the reduction of material size in science. The use of particle reduction in size from micro to nanoscale not only provides benefits to diverse scientific fields but also poses potential risks to humans and the environment. For the successful application of nanomaterials in bioscience, it is essential to understand the biological fate and potential toxicity of nanoparticles. The aim of this study was to evaluate the biological distribution as well as the potential toxicity of magnetic nanoparticles to enable their diverse applications in life science, such as drug development, protein detection, and gene delivery. We recently synthesized biocompatible silica-overcoated magnetic nanoparticles containing rhodamine B isothiocyanate (RITC) within a silica shell of controllable thickness [MNPs@SiO2(RITC)]. In this study, the MNPs@SiO2(RITC) with 50-nm thickness were used as a model nanomaterial. After intraperitoneal administration of MNPs@SiO2(RITC) for 4 weeks into mice, the nanoparticles were detected in the brain, indicating that such nanosized materials can penetrate blood-brain barrier (BBB) without disturbing its function or producing apparent toxicity. After a 4-week observation, MNPs@SiO2(RITC) was still present in various organs without causing apparent toxicity. Taken together, our results demonstrated that magnetic nanoparticles of 50-nm size did not cause apparent toxicity under the experimental conditions of this study.

Animals↗

Efficient prefractionation of low-abundance proteins in human plasma and construction of a two-dimensional map.

Human plasma is the most clinically valuable specimen, containing not only a dynamic concentration range of protein components, but also several groups of high-abundance proteins that seriously interfere with the detection of low-abundance potential biomarker proteins. To establish a high-throughput method for efficient depletion of high-abundance proteins and subsequent fractionation, prior to molecular analysis of proteins, we explored how coupled immunoaffinity columns, commercially available as multiple affinity removal columns (MARC) and free flow electrophoresis (FFE), could apply to the HUPO plasma proteome project. Here we report identification of proteins and construction of a human plasma 2-DE map devoid of six major abundance proteins (albumin, transferrin, IgG, IgA, haptoglobin, and antitrypsin) using MARC. The proteins were identified by PMF, matching with various internal 2-DE maps, resulting in a total of 144 nonredundant proteins that were identified from 398 spots. Tissue plasminogen activator, usually present at 10-60 ng/mL plasma, was also identified, indicative of a potentially low-abundance biomarker. Comparison of representative 2-D gel images of three ethnic groups (Caucasian, Asian-American, African-American) plasma exhibited minor differences in certain proteins between races and sample pretreatment. To establish a throughput fractionation of plasma samples by FFE, either MARC flow-through fractions or untreated samples of Korean serum were subjected to FFE. After separation of samples on FFE, an aliquot of each fraction was analyzed by 1-D gel, in which MARC separation was a prerequisite for FFE work. Thus, a working scheme of MARC --> FFE --> 1-D PAGE --> 2-D-nanoLC-MS/MS may be considered as a widely applicable standard platform technology for fractionation of complex samples like plasma.

Albumins↗

Volume-activated chloride currents in interstitial cells of Cajal.

Interstitial cells of Cajal (ICC) undergo marked morphological changes on contraction of the musculature, making it essential to understand properties of mechanosensitive ion channels. The whole cell patch-clamp technique was used to identify and to characterize volume-activated Cl- currents in ICC cultured through the explant technique. Hypotonic solutions (approximately 210 mosM) activated an outwardly rectifying current, which reversed near the equilibrium potential for Cl-. Time-dependent inactivation occurred only at pulse potentials of +80 mV, with a time constant of 478 +/- 182 ms. The degree of outward rectification was calculated using a rectification index, the ratio between the slope conductances of +65 and -55 mV, which was 13.9 +/- 1.5 at 76 mM initial extracellular Cl- concentration. The sequence of relative anion permeability of the outwardly rectifying Cl- channel was I- > Cl- > aspartate-. The chloride channel blockers, DIDS and 5-nitro-2-(3-phenlypropl-amino)benzoic acid, caused a voltage-dependent block of the outwardly rectifying Cl- current, inhibition occurring primarily at depolarized potentials. On exposure to hypotonic solution, the slope conductance significantly increased at the resting membrane potential (-70 mV) from 1.2 +/- 0.2 to 2.0 +/- 0.4 nS and at the slow-wave plateau potential (-35 mV) from 2.1 +/- 0.3 to 5.0 +/- 1.0 nS. The current was constitutively active in ICC and contributed to the resting membrane potential and excitability at the slow-wave plateau. In conclusion, swelling or volume change will depolarize ICC through activation of outwardly rectifying chloride channels, thereby increasing cell excitability.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Position of the superficial femoral artery in closed hip nailing.

INTRODUCTION: Adduction of the ipsilateral hip joint is necessary to facilitate closed hip nailing for trochanteric fracture. Even though positioning the patient supine with the perineal post against the ipsilateral medial thigh can change the course of the neurovascular structure in the proximal thigh, there have been no reports regarding the position of the femoral artery in the hip nailing position. MATERIALS AND METHODS: We studied the position of the superficial femoral artery in 59 thighs using color-flow duplex scanning method in three hip nailing positions. RESULTS: The mean of the distance between the superficial femoral artery and the femur in 48 normal limbs was 20.28 mm in neutral position (D1), 11.85 mm in 20(o) adduction (D2), and 9.53 mm in 20(o) adduction plus 20(o) internal rotation of the foot plate (D3). The distances D2 and D3 were always shorter than D1 ( p<0.001). D3 was less than 10 mm in 30 of the normal limbs (62.5%) and less than 5 mm in 4 (8%). In 11 patients who sustained a trochanteric fracture, the mean of D1, D2, and D3 in the injured limbs was 25.28 mm, 17.98 mm, and 14.38 mm, respectively. The mid-thigh circumference and D3 of the injured limbs were always greater than those of the normal limbs ( p<0.001). However, D3 of both sides was less than 10 mm in 3 patients. CONCLUSION: To lessen the vascular injury during hip nailing, we recommend that the limb be placed in neutral position during preparation of the interlocking holes.

Adolescent↗

Proteome analysis of differential protein expression in allergen-induced asthmatic mice lung after dexamethasone treatment.

Asthma has become substantially more prevalent in recent decades and is one of the foremost contributors to morbidity and mortality in industrialized countries. Corticosteroids are among the most effective medications for the treatment of asthma, but some patients do not respond well to corticosteroid treatment. In this study, we characterized the responses to an allergen and identified potential molecular targets of dexamethasone (Dex) treatment in acute asthma. Female BALB/c mice sensitized to ovalbumin (OVA) were challenged with aerosolized OVA for 1 week. During the challenge period, mice were treated daily with Dex by intraperitoneal injection. Phosphate-buffered saline treated and non-challenged mice served as control. Histological evaluation of OVA-induced mice revealed airway inflammation and goblet cell hyperplasia. In addition, interleukin 4 levels and interferon-gamma levels were increased and decreased, respectively. These changes were moderated by Dex treatment. Protein expression profiles were compared in each experimental group by two-dimensional gel electrophoresis and identified using matrix-assisted laser desorption/ionization-time of flight/time of flight mass spectrometry. Some proteins were increased, while others were decreased by Dex treatment. These results indicated that the regulation of protein expression might play a role in the immunological and pathological development of asthma and could be targeted for therapeutic intervention. These results may assist in the development of quantitative diagnostic markers to monitor disease progression or responses to therapy using proteomic approaches.

Animals↗

Lateral J-plate fixation in comminuted intercondylar fracture of the humerus.

BACKGROUND: Anatomical reduction and rigid internal fixation of the articular surface is key for functional recovery in types C2 and C3 (AO classification) fractures of the distal humerus. Since these fractures are associated with varying degrees of comminution in both the medial and lateral columns, rigid fixation of both columns is necessary for early mobilization of the elbow joint. METHODS: We performed a prospective study of the lateral J-plating technique in 17 patients with comminuted intercondylar fracture of the humerus. There were 9 type C2 and 8 type C3 fractures by the AO/ASIF classification. A lateral J-plate was applied along the lateral aspect of lateral column, and the lag screws were inserted into the medial column through the plate hole. A medial reconstruction plate was selectively applied on the posterior aspect of medial column. RESULTS: All fractures united by 18.7 weeks on average (range 10-28 weeks). Seven patients presented with limitation of motion of the elbow joint, and 5 of them underwent arthrolysis and excision of the heterotopic ossification. The final range of motion of the elbow joint was flexion contracture of 16 deg to further flexion of 121 deg on average. Functional results were excellent in 9 cases, good in 6, fair in 1, and poor in 1 according to Murray's criteria. CONCLUSION: Lateral J-plating with selective augmentation of the medial column provided sufficient rigidity and good clinical results.

Adolescent↗

Functional implications of Ca2+ mobilizing properties for nitric oxide production in aortic endothelium.

We have investigated the relationship between Ca2+ mobilization and the cellular production of nitric oxide (NO) by using fura-2 and diaminofluorescein-2 (DAF-2), an NO-sensitive dye, in bovine aortic endothelial cells (BAEC). High concentrations of ATP (100 microM) or thapsigargin (1 micro M) depleted intracellular Ca2+ store sites with a single Ca2+ transient, and induced an increase in DAF-2 fluorescence even in Ca2+-free solution, thereby indicating that store depletion leads to NO production. The same level of increase in DAF-2 fluorescence was elicited by low concentrations of ATP (1 micro M), which induced Ca2+ oscillations but did not deplete store sites, only in the presence of extracellular Ca2+. Furthermore, inhibition of ATP (1 micro M)-induced Ca2+ entry with La3+ suppressed DAF-2 fluorescence. ATP (0.3 micro M), applied in Ca2+-free, Mn2+-containing solution induced Mn2+ entry-coupled fura-2 quenching, repeating shortly after each oscillation peak. These results indicate that NO is produced preferentially by entered Ca2+, and that Ca2+ oscillations, which are induced by low levels of stimulation, play a significant role in NO production by strongly modulating Ca2+ entry.

Adenosine Triphosphate↗

Synthesis and antibacterial activity of 1beta-methylcarbapenems having a 2, 2-disubstituted-1, 3-diazabicyclo[3.3.0]octan-4-one moiety and related compounds. Part III.

The synthesis of new series of 1beta-methylcarbapenems having a 2, 2-disubstituted-1, 3-diazabicyclo[3.3.0]octan- and -[4.3.0]nonan-4-one moiety is described. Their in vitro antibacterial activities against both Gram-positive and Gram-negative bacteria were tested and the effect of the substituent of the bicyclic ring was investigated. A particular compound (16 f) bearing a hydroxymethyl group showed the most potent antibacterial activity and the compound (17 a) with a 1, 3-diazabicyclo[4.3.0]nonane moiety exhibited excellent stability against renal dehydropeptidase-I (DHP-I) to Meropenem.

Anti-Bacterial Agents↗

ATP-sensitive K(+) channels composed of Kir6.1 and SUR2B subunits in guinea pig gastric myocytes.

This study was designed to identify the single-channel properties and molecular entity of ATP-sensitive K(+) (K(ATP)) channels in guinea pig gastric myocytes with patch-clamp recording and RT-PCR. Pinacidil and diazoxide activated K(ATP) currents in a glibenclamide-sensitive manner. The open probability of channels was enhanced by the application of 10 microM pinacidil from 0.085 +/- 0.04 to 0.20 +/- 0.05 (n = 7) and was completely blocked by 10 microM glibenclamide. Single-channel conductance was 37.3 +/- 2.5 pS (n = 4) between -80 and -20 mV in symmetrical K(+) gradient conditions. In inside-out mode, K(ATP) channels showed no spontaneous openings and were activated by the application of nucleotide diphosphates to the cytoplasmic side. These single-channel properties are similar to those of the nucleotide diphosphate-dependent K(+) channels in vascular smooth muscle, which are composed of Kir6.1 and sulfonylurea receptor (SUR)2B. RT-PCR demonstrated the presence of Kir6.1, Kir6.2, and SUR2B in guinea pig stomach smooth muscle cells. These results suggest that K(ATP) channels in smooth muscle cells of the guinea pig stomach are composed of Kir6.1 and SUR2B.

ATP-Binding Cassette Transporters↗