{"id":18957,"date":"2019-02-21T17:27:38","date_gmt":"2019-02-21T09:27:38","guid":{"rendered":"http:\/\/biopioneer.com.tw\/?p=18957"},"modified":"2022-07-20T14:34:59","modified_gmt":"2022-07-20T06:34:59","slug":"%e5%ad%94%e9%9b%80%e7%9f%b3%e7%b6%a0%e7%84%a1%e6%a9%9f%e7%a3%b7%e9%85%b8%e6%a0%b9%e6%aa%a2%e6%b8%ac-malachite-green-phosphate-detection-kit-expedeon-%e8%b2%a8%e8%99%9f303-0125","status":"publish","type":"post","link":"https:\/\/biopioneer.com.tw\/?p=18957","title":{"rendered":"\u5b54\u96c0\u77f3\u7da0\/\u7121\u6a5f\u78f7\u9178\u6839\u6aa2\u6e2c | Malachite Green Phosphate Detection Kit Expedeon \u8ca8\u865f303-0125"},"content":{"rendered":"<p><img decoding=\"async\" src=\"https:\/\/cdna.expedeon.com\/wp-content\/uploads\/2018\/02\/expedeon.png\" alt=\"\" \/><\/p>\n<p><span style=\"color: #ff6600;\"><strong><span style=\"font-size: 12pt;\">Malachite Green Phosphate Detection Kit<\/span><\/strong><\/span><\/p>\n<p><span style=\"color: #3366ff;\"><a style=\"color: #3366ff;\" href=\"http:\/\/biopioneer.com.tw\/?p=10414\">\u9ad8\u9748\u654f\u5ea6Malachite green\u78f7\u9178\u6839\u5448\u8272\u6cd5 |\u8ca8\u865f303-0125\uff08\u9748\u654f\u5ea64\uff0d40uM\uff09<\/a><\/span><\/p>\n<p><span style=\"color: #008000;\"><strong><span style=\"font-size: 12pt;\">PiColorLock Gold Phosphate Detection System<\/span><\/strong><\/span><\/p>\n<p>PiColorLock\u2122\u78f7\u9178\u6839\u6aa2\u6e2c\u8a66\u5291\uff0c\u5176\u539f\u7406\u70ba\u6aa2\u6e2c\u7121\u6a5f\u78f7\u9178\u6839\uff08Pi\uff09\u4e4b\u542b\u91cf\uff1b\u4f7f\u7528Malachite green\u78f7\u9178\u6839\u5448\u8272\u6cd5\u3002\u53ef\u7528\u65bc\u6e2c\u91cf\u6703\u7522\u751fPi\u7684\u4efb\u4f55\u9176\uff0c\u5305\u62ecATPases\u3001GTPases, phosphatases\u3001Kinase\u3001Nucleotidases\u3001helicases, 5\u2019nucleotidases, DNA gyrases, heat shock proteins (HSPs), P-type ATPases, Kinesins, transferases and ATP-dependent ligases\u7b49\u9175\u7d20\u6d3b\u6027\u4e4b\u5206\u6790\u3002PiColorLock\u2122Gold\u57fa\u65bcmalachite green-based assay\u5b54\u96c0\u77f3\u7da0\u7684\u6e2c\u5b9a\u65b9\u6cd5\uff0c\u7528\u65bc\u6e2c\u91cf\u00a0free phosphate\u7121\u6a5f\u78f7\u9178\u9e7d\u6c34\u6eb6\u6db2\u3002 \u8a72\u6e2c\u5b9a\u4f9d\u8cf4\u65bc\u5b54\u96c0\u77f3\u7da0\u4e4b\u9593\u5f62\u6210\u8907\u5408\u7269\u926c\u9178\u9e7d\u548cfree orthophosphate\u6e38\u96e2\u6b63\u78f7\u9178\u9e7d\uff0c\u6eb6\u6db2\u984f\u8272\u5f9eorange\u6a59\u8272\u8b8a\u70ba\u7da0\u8272\u00a0green\u3002\u984f\u8272\u7684\u5f62\u6210\u53ef\u4ee5\u65b9\u4fbf\u5730\u5728\u5206\u5149\u5149\u5ea6\u8a08\uff08620-650nm\uff09\u4e0a\u6216\u5728\u5206\u5149\u5149\u5ea6\u8a08\u4e0a\u6e2c\u91cf\uff0c\u8b80\u503c\u8207\u6e38\u96e2\u6b63\u78f7\u9178\u9e7d\u6fc3\u5ea6\u76f4\u63a5\u76f8\u95dc\u3002\u00a0PiColorLock\u2122\u7684\u7368\u7279\u914d\u65b9\u63d0\u9ad8\u4e86\u6e2c\u5b9a\u7dda\u6027\uff0c\u52d5\u614b\u7bc4\u570d\u548c\u984f\u8272\u7a69\u5b9a\u6027\uff1b\u4e5f\u53ef\u4ee5\u7528PiColorLock\u8207\u4e0d\u7a69\u5b9a\u7684\u5e95\u7269\uff08\u4f8b\u5982ATP\uff0cGTP\uff09\u4e00\u8d77\u4f7f\u7528\uff0c\u6240\u8ff0\u5e95\u7269\u8207\u5176\u5b83\u9178\u6027\u67d3\u6599\u57fa\u6aa2\u6e2c\u8a66\u5291\u7522\u751f\u9ad8\u7684\u975e\u9176\u80cc\u666f\u4fe1\u865f\u3002\u6b64\u7522\u54c1\u70ba\u4e0d\u5177\u653e\u5c04\u6027\u61c9\u7528Malachite green\u78f7\u9178\u6839\u5448\u8272\u6cd5\uff0c\u7a69\u5b9a\u7684\u7522\u751f\u7da0\u8272dye-phosphate\u8907\u5408\u7269\uff0cPi-dye\u7a69\u5b9a\u6027\u8907\u5408\u7269\u65bc\u9577\u6642\u9593\u4e4b\u6e2c\u91cf\uff0c\u4e0d\u6613\u7522\u751f\u53cd\u61c9\u7269\u6c89\u6fb1(30\u5206\u5f8c)\u554f\u984c\u800c\u5f71\u97ff\u6e2c\u91cf\u8b80\u503c\u3002\u5075\u6e2c\u7bc4\u570d\u5ee3\uff0c\u5728\u86cb\u767d\u8cea\u6fc3\u5ea6\u9ad8\u4e0b\u4e0d\u6703\u6291\u5236\u984f\u8272\u4e4b\u5f62\u6210\uff1b\u53ef\u6e1b\u5c11\u6a23\u54c1\u7a00\u91cb\u7684\u5fc5\u8981\u3002\u53e6\u63d0\u4f9bStabilizer\u5728\u9178\u53ef\u6eb6\u6027\u53d7\u8cea\u4e0b\uff0c\u907f\u514d\u767c\u751f\u53d7\u8cea\u975e\u9175\u7d20\u6c34\u89e3\u5e72\u64fe\u9020\u6210\u7684\u9ad8\u80cc\u666f\u96dc\u8a0a\u3002<\/p>\n<p><img decoding=\"async\" loading=\"lazy\" class=\"wp-image-3193 \" src=\"http:\/\/biopioneer.com.tw\/wp-content\/uploads\/2014\/09\/picolorlock_web.gif\" alt=\"picolorlock_web\" width=\"298\" height=\"198\" \/><\/p>\n<p><strong>PiColorLock\u2122 \u53ef\u7528\u65bc\u6e2c\u91cf\u4ee5\u4e0b\u6e38\u96e2\u6b63\u78f7\u9178\u9e7d\u7684\u91cb\u653e<\/strong><\/p>\n<p>1. Phosphatase Assays\u78f7\u9178\u9176\u6e2c\u5b9a\uff1a\u5f9epeptide\uff0cprotein\u86cb\u767d\u8cea\u6216\u00a0small molecule substrate\u5c0f\u5206\u5b50\u5e95\u7269\u4e2d\u91cb\u653e\u78f7\u9178\u9e7d<br \/>\n2. Lipase Assays\u8102\u80aa\u9176\u6e2c\u5b9a\uff1a\u5f9e\u78f7\u8102\u4e2d\u91cb\u653ephospholipids\u78f7\u9178\u9e7d<br \/>\n3. Nucleoside Triphosphatase Assays\u6838\u82f7\u4e09\u78f7\u9178\u9176\u6e2c\u5b9a\uff1a\u5f9enucleoside triphosphates\u6838\u82f7\u4e09\u78f7\u9178\u4e2d\u91cb\u653e\u78f7\u9178\u9e7d\uff08ATP\uff0cGTP\uff0cTTP\uff0cCTP\uff09<br \/>\n4. Quantitation\u00a0\u5b9a\u91cfphospholipids\u78f7\u8102\uff0cproteins\u86cb\u767d\u8cea\u548cDNA\u4e2d\u7684phosphate\u78f7\u9178\u9e7d<br \/>\n5. Drug Discovery\u85e5\u7269\u767c\u73fe\uff1a\u78f7\u9178\u9176\u6291\u5236\u5291\u7684\u9ad8\u901a\u91cf\u7be9\u9078\u3002<\/p>\n<p><img decoding=\"async\" src=\"https:\/\/cdna.expedeon.com\/wp-content\/uploads\/2017\/08\/PiColorLock-Application-sheet.jpg\" alt=\"\" \/><\/p>\n<p><img decoding=\"async\" loading=\"lazy\" class=\"size-full wp-image-2788 alignleft\" src=\"https:\/\/cdna.expedeon.com\/wp-content\/uploads\/2017\/08\/PiColorLock-cuvettes-new.jpg\" alt=\"Demonstration of PiColorLock\u2122 phosphate detection reagent performing homogeneously to outperform competitors\" width=\"345\" height=\"172\" \/><\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>Figure 1. Competitor assays are beset with several problems including reagent precipitation. The high stability of PiColorLock\u2122 ensures high stability of the colored dye\u2013phosphate complexes (green color).\u57161.\u5e02\u552e\u5546\u54c1\u5b58\u5728\u8a66\u5291\u6c89\u6fb1\u554f\u984c\u3002 PiColorLock\u2122\u7684\u9ad8\u7a69\u5b9a\u6027\u78ba\u4fdd\u4e86\u6709\u8272\u67d3\u6599 &#8211; \u78f7\u9178\u9e7d\u914d\u5408\u7269\u7684\u9ad8\u7a69\u5b9a\u6027\uff08\u7da0\u8272\uff09\u3002<\/p>\n<p><img decoding=\"async\" loading=\"lazy\" class=\" wp-image-2787 alignleft\" src=\"https:\/\/cdna.expedeon.com\/wp-content\/uploads\/2017\/08\/PiColor-Lock-Data.png\" alt=\"PiColorLock\u2122 showing high stability of the colored dye-phosphate complexes compared to competitors\" width=\"387\" height=\"250\" \/><\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>Figure 2. ATP has been incubated in three detection reagents. A steadily rising background signal is seen with competitor reagents, whereas PiColorLock\u2122 provides baseline readings.\u57162. ATP\u5728\u4e09\u7a2e\u6aa2\u6e2c\u8a66\u5291\u3002 \u4f7f\u7528\u5e02\u552e\u5546\u54c1\u53ef\u4ee5\u770b\u5230\u7a69\u5b9a\u4e0a\u5347\u7684\u80cc\u666f\u4fe1\u865f\uff0c\u800cPiColorLock\u2122\u5247\u63d0\u4f9b\u57fa\u7dda\u8b80\u6578\u3002<\/p>\n<p><img decoding=\"async\" loading=\"lazy\" class=\" wp-image-2789 alignleft\" src=\"https:\/\/cdna.expedeon.com\/wp-content\/uploads\/2017\/08\/PiColorlock-data-no-ALS-new.jpg\" alt=\"PiColorLock\u2122 is designed to have a large linear range, reducing the need for sample dilution.\" width=\"494\" height=\"444\" \/><\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>Figure 3. PiColorLock\u2122 has also been designed to have a large linear range, thus reducing the need for sample dilution. Competitors\u2019 products are linear over a much narrower range of concentrations.\u57163. PiColorLock\u2122\u5177\u6709\u8f03\u5927\u7684\u7dda\u6027\u7bc4\u570d\uff0c\u56e0\u6b64\u6e1b\u5c11\u4e86\u6a23\u54c1\u7a00\u91cb\u7684\u9700\u8981\u3002\u5e02\u552e\u5546\u54c1\u7684\u7522\u54c1\u5728\u66f4\u7a84\u7684\u6fc3\u5ea6\u7bc4\u570d\u5167\u624d\u662f\u7dda\u6027\u7684\u3002<\/p>\n<p>&nbsp;<\/p>\n<table style=\"height: 353px;\" width=\"766\">\n<tbody>\n<tr>\n<td style=\"text-align: center;\" width=\"100\"><strong>\u7522\u54c1\u578b\u865f<\/strong><\/td>\n<td style=\"text-align: center;\" width=\"460\"><strong>\u7522\u54c1\u540d\u7a31<\/strong><\/td>\n<td style=\"text-align: center;\" width=\"112\"><strong>\u5305\u88dd<\/strong><\/td>\n<\/tr>\n<tr>\n<td style=\"text-align: center;\" width=\"100\">303-0125<br \/>\n303-0500<\/td>\n<td width=\"460\"><a href=\"https:\/\/www.innovabiosciences.com\/products\/phosphate-detection\/picolorlock\/all\/picolorlock-phosphate-detection-system\" target=\"_blank\">PiColorLock Gold Phosphate Detection System<\/a>\uff08\u9748\u654f\u5ea64\uff0d40uM\uff09<\/td>\n<td style=\"text-align: center;\" width=\"100\">\u6700\u591a1560 assays<br \/>\n\u6700\u591a6250 assays<\/td>\n<\/tr>\n<tr>\n<td style=\"text-align: center;\" colspan=\"3\" width=\"568\"><span style=\"color: #339966;\"><strong>\u95dc\u806f\u5546\u54c1<\/strong><\/span><\/td>\n<\/tr>\n<tr>\n<td style=\"text-align: center;\" width=\"100\">601-9999<\/td>\n<td width=\"460\"><a href=\"https:\/\/www.innovabiosciences.com\/products\/phosphate-detection\/atp-gtp-kits\/all\/10mm-lyophilized-atp\" target=\"_blank\">10mM Lyophilized ATP<\/a><\/td>\n<td style=\"text-align: center;\" width=\"100\">0.5ml<\/td>\n<\/tr>\n<tr>\n<td style=\"text-align: center;\" width=\"100\">602-0120<br \/>\n602-0121<br \/>\n602-0122<\/td>\n<td width=\"460\"><a href=\"https:\/\/www.innovabiosciences.com\/products\/phosphate-detection\/atp-gtp-kits\/all\/gtpase-assay-kit\" target=\"_blank\">High Throughput Colorimetric GTPase Assays<\/a><\/td>\n<td style=\"text-align: center;\" width=\"100\">196 assays<br \/>\n480 assays<br \/>\n5 \u00d7 480 assays<\/td>\n<\/tr>\n<tr>\n<td style=\"text-align: center;\" width=\"100\">501-0015<\/td>\n<td width=\"460\"><a href=\"https:\/\/www.innovabiosciences.com\/products\/phosphate-detection\/affinity-resins\/all\/pibind-resin\" target=\"_blank\">PiBind resin<\/a>\uff0d\u5feb\u901f\u79fb\u9664\u6a23\u54c1\u4e2d\u6c61\u67d3\u7684\u78f7\u9178\u6839\uff08Pi\uff09<\/td>\n<td style=\"text-align: center;\" width=\"100\">5g<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<ol>\n<li>Selective Inhibitors of Alpha2-containing Isoforms of Na,K-ATPase and use thereof for reduction of intraocular pressure (FreePatentsOnline, 2018)<\/li>\n<li>Mycobacterial PknG Targets the Rab7l1 Signaling Pathway To Inhibit Phagosome\u2013Lysosome Fusion (Journal of Immunology, 2018)<\/li>\n<li>c-Abl-mediated Drp1 phosphorylation promotes oxidative stress-induced mitochondrial fragmentation and neuronal cell death (Nature.com, 2017)<\/li>\n<li>Disassembly of the Staphylococcus aureus hibernating 100S ribosome by an evolutionarily conserved GTPase &#8211; PNAS (2017)<\/li>\n<li>Construction of Structural Mimetics of the Thyrotropin Receptor Intracellular Domain &#8211; Biophys J. (2016)<\/li>\n<li>Development of a one-pot assay for screening and identification of Mur pathway inhibitors in Mycobacterium tuberculosis &#8211; Nature (2016)<\/li>\n<li>Selective assembly of Na,K-ATPase ?2?2 heterodimers in the heart: distinct functional properties and isoform-selective inhibitors &#8211; J Biol Chem (2016)<\/li>\n<li>Reduced Dynamin-related Protein 1 Protects Against Phosphorylated Tau-induced Mitochondrial Dysfunction and Synaptic Damage in Alzheimer&#8217;s Disease &#8211; Oxford Journals (2016)<\/li>\n<li>Structure of the Dictyostelium Myosin-II Heavy Chain Kinase A (MHCK-A) [alpha]-kinase domain apoenzyme reveals a novel autoinhibited conformation &#8211; Scientific Rep. (2016)<\/li>\n<li>Independent mechanisms target SMCHD1 to H3K9me3-modified chromatin and the inactive X chromosome &#8211; Molecular and Cellular Biology (2015)<\/li>\n<li>Characterization of the Catalytic and Nucleotide Binding Properties of the Alpha-kinase domain of Dictyostelium Myosin-II Heavy Chain Kinase A. &#8211; The Journal of Biological Chemistry (2015)<\/li>\n<li>Concerted and differential actions of two enzymatic domains underlie Rad5 contributions to DNA damage tolerance &#8211; Nucleic Acids Research (2015)<\/li>\n<li>Embryo defective 14 encodes a plastid-targeted cGTPase essential for embryogenesis in maize &#8211; Plant J. (2015)<\/li>\n<li>Insight into Structure-Function Relationships and Inhibition of the Fatty Acyl-AMP Ligase (FadD32) Orthologs from Mycobacteria &#8211; J. Biol. Chem. (2016)<\/li>\n<li>Structure-Based Mutagenesis of Sulfolobus Turreted Icosahedral Virus B204 Reveals Essential Residues in the Virion-Associated DNA-Packaging ATPase &#8211; J. Virol. (2016)<\/li>\n<li>Benzimidazole covalent probes and the gastric H+\/K+-ATPase as a model system for protein labeling in a copper-free setting &#8211; Molecular BioSystems (2016)<\/li>\n<li>Purification of the Human ?2 Isoform of Na,K-ATPase Expressed in Pichia pastoris. Stabilization by Lipids and FXYD1 &#8211; Biochemistry (2007)<\/li>\n<li>Stabilization of Na+,K+-ATPase Purified from Pichia pastoris Membranes by Specific Interactions with Lipids &#8211; Biochemistry (2007)<\/li>\n<li>Characterization of Human GTPBP3, a GTP-Binding Protein Involved in Mitochondrial tRNA Modification &#8211; Mol Cell Biol (2008)<\/li>\n<li>Characterization of Streptococcus gordonii SecA2 as a Paralogue of SecA &#8211; J Bacteriol (2009)<\/li>\n<li>Structural and Mutational Analyses of Deinococcus radiodurans UvrA2 Provide Insight into DNA Binding and Damage Recognition by UvrAs &#8211; Structure (2009)<\/li>\n<li>Identification of a Small Molecule Inhibitor of the Human DNA Repair Enzyme Polynucleotide Kinase\/Phosphatase &#8211; Cancer Res (2009)<\/li>\n<li>Functional study on GTP hydrolysis by the GTP-binding protein from Sulfolobus solfataricus, a member of the HflX family &#8211; J Biochem (2010)<\/li>\n<li>Oligomeric assembly and interactions within the human RuvB-like RuvBL1 and RuvBL2 complexes &#8211; Biochem. J. (2010)<\/li>\n<li>Anti-tubercular screening of natural products from Colombian plants: 3-methoxynordomesticine, an inhibitor of MurE ligase of Mycobacterium tuberculosis &#8211; J Antimicrob Chemother (2010)<\/li>\n<li>Roles of Electrostatics and Conformation in Protein-Crystal Interactions &#8211; PLoS One (2010)<\/li>\n<li>Sensor combination and chemometric variable selection for online monitoring of Streptomyces coelicolor fed-batch cultivations &#8211; Applied Microbiology and Biotechnology (2010)<\/li>\n<li>Mechanism of Action of an Imidopiperidine Inhibitor of Human Polynucleotide Kinase\/Phosphatase &#8211; JBC (2010)<\/li>\n<li>ATP-dependent MurE ligase in Mycobacterium tuberculosis: Biochemical and structural characterisation &#8211; Tuberculosis (2010)<\/li>\n<li>Selectivity of Digitalis Glycosides for Isoforms of Human Na,K-ATPase &#8211; JBC (2010)<\/li>\n<li>Substrate uptake, phosphorus repression, and effect of seed culture on glycopeptide antibiotic production: Process model development and experimental validation &#8211; Biotechnology and Bioengineering (2010)<\/li>\n<li>Characterisation of multiple substrate-specific (d)ITP\/(d)XTPase and modelling of deaminated purine nucleotide metabolism &#8211; MIMS EPrints (2011<\/li>\n<li>Stabilization of the ?2 isoform of Na,K-ATPase by mutations in a phospholipid binding pocket &#8211; JBC (2011)<\/li>\n<li>Structural and functional insights into DNA-end processing by the archaeal HerA helicase\u2013NurA nuclease complex &#8211; Nucl Acids Res (2011)<\/li>\n<li>FXYD Proteins Stabilize Na,K-ATPase, Amplification Of Specific Phosphatidylserine -Protein Interactions &#8211; JBC (2011)<\/li>\n<li>Sepsis impairs alveolar epithelial function by downregulating Na-K-ATPase pump &#8211; AJP &#8211; Lung Physiol (2011)<\/li>\n<li>Structural and functional insights into DNA-end processing by the archaeal HerA helicase\u2013NurA nuclease complex &#8211; Nucleic Acids Research (2011)<\/li>\n<li>Sepsis impairs alveolar epithelial function by downregulating Na-K-ATPase pump &#8211; AJP &#8211; Lung Physiol (2011)<\/li>\n<li>Synthesis and Antibacterial Evaluation of a New Series of N-Alkyl-2-alkynyl\/(E)-alkenyl-4-(1H)-quinolones &#8211; Molecules (2012)<\/li>\n<li>The unusual mycobacterial chaperonins: evidence for in vivo oligomerization and specialization of function &#8211; Molecular Microbiology (2012)<\/li>\n<li>Kinetic Modelling of GlmU Reactions \u2013 Prioritization of Reaction for Therapeutic Application &#8211; PLoS One (2012)<\/li>\n<li>Mesenchymal Stem Cell Therapy &#8211; Humana Press (2013)<\/li>\n<li>Structural and Mechanistic Characterization of L-Histidinol Phosphate Phosphatase from the PHP Family of Proteins &#8211; Biochemistry (2013)<\/li>\n<li>Polyphosphates inhibit extracellular matrix mineralization in MC3T3-E1 osteoblast cultures &#8211; Bone (2013)<\/li>\n<li>A Newly Uncovered Group of Distantly Related Lysine Methyltransferases Preferentially Interact with Molecular Chaperones to Regulate Their Activity &#8211; PLoS Genetics (2013)<\/li>\n<li>Na+ Regulation in the Malaria Parasite Plasmodiumfalciparum Involves the Cation ATPase PfATP4 and Is a Target of the Spiroindolone Antimalarials &#8211; Cell Host &amp; Microbe (2013)<\/li>\n<li>A calcineurin docking motif (LxVP) in dynamin-related protein 1 contributes to mitochondrial fragmentation and ischemic neuronal injury &#8211; The Journal of Biological Chemistry (2013)<\/li>\n<li>Characterisation of ATP-Dependent Mur Ligases Involved in the Biogenesis of Cell Wall Peptidoglycan in Mycobacterium tuberculosis &#8211; PLoS One (2013)<\/li>\n<li>ATP-dependent transport of statins by human and rat MRP2\/Mrp2 &#8211; Toxicology and Applied Pharmacology (2013)<\/li>\n<li>Structural and functional characterization of a phosphatase domain within yeast general transcription factor TFIIIC &#8211; The Journal of Biological Chemistry (2013)<\/li>\n<li>Plastid division control: the PDV proteins regulate DRP5B dynamin activity &#8211; Plant Molecular Biology (2013)<\/li>\n<li>Extracellular ATP Released by Osteoblasts Is A Key Local Inhibitor of Bone Mineralisation &#8211; PLoS One (2013)<\/li>\n<li>Direct regulation of microtubule dynamics by KIF17 motor and tail domains &#8211; Journal of Biological Chemistry (2013)<\/li>\n<li>A novel cholesterol-producing Pichia pastoris strain is an ideal host for functional expression of human Na,K-ATPase ?3?1 isoform &#8211; Applied Microbiology and Biotechnology (2013)<\/li>\n<li>Chrysophaentins are competitive inhibitors of FtsZ and inhibit Z-ring formation in live bacteria &#8211; Bioorganic &amp; Medicinal Chemistry (2013)<\/li>\n<li>RNA silencing of genes involved in Alzheimer&#8217;s disease enhances mitochondrial function and synaptic activity &#8211; Biochimica et Biophysica Acta (2013)<\/li>\n<li>A biosensor of local kinesin activity reveals roles of PKC and EB1 in KIF17 activation &#8211; Journal of Cell Biology (2013)<\/li>\n<li>3,4-Methylenedioxy-?-nitrostyrene inhibits NLRP3 activation by blocking assembly of the inflammasome &#8211; Journal of Biological Chemistry (2013)<\/li>\n<li>Bordetella pertussis adenylate cyclase toxin translocation across a tethered lipid bilayer &#8211; PNAS (2013)<\/li>\n<li>Mutations in the Chromodomain-like Insertion of Translation Elongation Factor 3 Compromise Protein Synthesis Through Reduced ATPase Activity &#8211; Journal of Biological Chemistry (2013)<\/li>\n<li>Prospecting for Unannotated Enzymes: Discovery of a 3?,5?-Nucleotide Bisphosphate Phosphatase within the Amidohydrolase Superfamily &#8211; Biochemistry (2013)<\/li>\n<li>Ablation of Osteopontin Improves the Skeletal Phenotype of Phospho1-\/- Mice &#8211; Journal of Bone and Mineral Research (2014)<\/li>\n<li>Low Molecular Weight Protein Tyrosine Phosphatases Control Antibiotic Production in Streptomyces coelicolor A3(2) &#8211; Enzyme Engineering (2014)<\/li>\n<li>The PIKE Homolog Centaurin gamma Regulates Developmental Timing in Drosophila &#8211; PLoS One (2014)<\/li>\n<li>Quantification of biliary excretion and sinusoidal excretion of 5(6)-carboxy-2?,7?-dichlorofluorescein (CDF) in cultured hepatocytes isolated from Sprague Dawley, Wistar and Mrp2-deficient Wistar (TR?) rats &#8211; Toxicology in Vitro (2014)<\/li>\n<li>Self-Assembly of MinE on the Membrane Underlies Formation of the MinE-Ring to Sustain Function of the E. coli Min System &#8211; Journal of Biological Chemistry (2014)<\/li>\n<li>Allosteric Activation of Bordetella pertussis Adenylyl Cyclase by Calmodulin: Molecular Dynamics and Mutagenesis Studies &#8211; Journal of Biological Chemistry (2014)<\/li>\n<li>Optimization of Pyrrolamides as Mycobacterial GyrB ATPase Inhibitors: Structure-Activity Relationship and In Vivo Efficacy in a Mouse Model of Tuberculosis &#8211; Antimicrobial Agents and Chemotherapy (2014)<\/li>\n<li>Assays, Surrogates, and Alternative Technologies for a TB Lead Identification Program Targeting DNA Gyrase ATPase &#8211; Journal of Biomolecular Screening (2014)<\/li>\n<\/ol>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Malachite Green Phosphate Detection Kit \u9ad8\u9748\u654f\u5ea6Malachite g [&hellip;]<\/p>\n","protected":false},"author":3,"featured_media":18963,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":[],"categories":[3],"tags":[2360],"_links":{"self":[{"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/posts\/18957"}],"collection":[{"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/users\/3"}],"replies":[{"embeddable":true,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=18957"}],"version-history":[{"count":2,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/posts\/18957\/revisions"}],"predecessor-version":[{"id":18965,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/posts\/18957\/revisions\/18965"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=\/wp\/v2\/media\/18963"}],"wp:attachment":[{"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=18957"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=%2Fwp%2Fv2%2Fcategories&post=18957"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/biopioneer.com.tw\/index.php?rest_route=%2Fwp%2Fv2%2Ftags&post=18957"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}