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Expression, Purification and Crystallization of Thermostable Mutant of Cutinase Est1 from <i>Thermobifida alba</i>
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作者 Kengo Kitadokoro Shingo Matsui +2 位作者 Ryouhei Osokoshi Kensuke Nakata Shigeki Kamitani 《Advances in Bioscience and Biotechnology》 2018年第5期215-223,共9页
A double mutantEst1, which is a plastic degrading cutinase-type esterase in Thermobifida alba, has been over-expressed in Escherichia coli. The recombinant protein was purified by a two-step protocol involving immobil... A double mutantEst1, which is a plastic degrading cutinase-type esterase in Thermobifida alba, has been over-expressed in Escherichia coli. The recombinant protein was purified by a two-step protocol involving immobilized metal affinity chromatography and cation-exchange chromatography, yielding 120 mg of protein per liter of bacterial culture. Crystals have been obtained by using the sitting-drop vapor-diffusion technique. Native diffraction data to 1.37 &Aring;resolution were obtained at the BL44XU beam line of SPring-8 from a flash-frozen crystal at 100 K. The crystals belong to space group C2, with unit-cell parameters a = 127.2 &Aring;, b = 42.1 &Aring;, c = 63.2 &Aring;, β = 114.7&deg;, likely containing one Est1 double mutant (296 residues) per asymmetric unit. 展开更多
关键词 CUTINASE Themobifida ALBA Plastic Degrading Esterase CRYSTALLIZATION High Resolution Crystallographic Data
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Distinct Gene Expression Profile Distinguishes Increased Metabolic Activity in Spontaneously Hyperactive Rats While Sedentary from That Induced by Exercise
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作者 Manami Abe Yuki Matsuo +10 位作者 Akiko Harada-Sukeno Takayuki Uchida Kanako Kitahata Chisato Tomida Katsuya Hirasaka Shigetada Teshima-Kondo Nagakatsu Harada Yutaka Nakaya Hiroshi Sakaue Reiko Nakao Takeshi Nikawa 《Advances in Biological Chemistry》 2018年第1期1-14,共14页
The Spontaneously-Running Tokushima Shikoku (SPORTS) strain is an original line derived from Wistar rats, which spontaneously runs >6 km/day on wheels, and has better glucose tolerance and less fat than Wistar rats... The Spontaneously-Running Tokushima Shikoku (SPORTS) strain is an original line derived from Wistar rats, which spontaneously runs >6 km/day on wheels, and has better glucose tolerance and less fat than Wistar rats. However, the molecular mechanism that contributes to the increased metabolic activity in SPORTS rats is unknown. The present study aimed to characterize the gene expression profiles of skeletal muscles in SPORTS rats housed under sedentary (SED) conditions. We found that the expression levels of genes encoding mitochondrial respiratory chain enzymes such as ATP synthase 6 (mt-Atp6) and cytochrome c oxidase subunit 6c (Cox6c), were higher in the soleus (SOL) muscles of SED SPORTS than in SED Wistar rats. The ratio of type IIa myofibers was higher and glucose tolerance was better in SED SPORTS than in Wistar rats that were sedentary and trained daily on treadmills, respectively. We then investigated candidate genes that might contribute to the better glucose tolerance of SED SPORTS rats using DNA microarray analysis. Among 116 upregulated genes in the SOL muscles of SED SPORTS rats, only 19 were also increased in trained Wistar rats. We focused on v-erb-b2 erythroblastic leukemia viral oncogene homolog 3 (Erbb3), which was associated with glucose transport in myocytes, and found higher expression levels in the SOL muscles of SED SPORTS than in SED Wistar rats. The SOL muscles of SED SPORTS rats also contained more activity of β-hydroxyacylCoA dehydrogenase, a key enzyme of β-oxidation, indicating enhanced lipid oxidation. These findings suggest that increased metabolic activity in skeletal muscle (especially the SOL muscle) of SPORTS rats is congenital and that gene expression profiles of SPORTS rats and Trained Wistar rats are different. 展开更多
关键词 Mitochondria MYOFIBER Type MICROARRAY Metabolism
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Erratum to “Expression, Purification and Crystallization of Thermostable Mutant of Cutinase Est1 from <i>Thermobifida alba</i>.” [Advances in Bioscience and Biotechnology 9 (2018), 215-223]
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作者 Kengo Kitadokoro Shingo Matsui +4 位作者 Ryouhei Osokoshi Kensuke Nakata Uschara Thumarat Fusako Kawai Shigeki Kamitani 《Advances in Bioscience and Biotechnology》 2018年第8期378-379,共2页
The original online version of this article (Kitadokoro, K., Matsui, S., Osokoshi, R., Nakata, K. and Kamitani, S. (2018) Expression, Purification and Crystallization of Thermostable Mutant of Cutinase Est1 from Therm... The original online version of this article (Kitadokoro, K., Matsui, S., Osokoshi, R., Nakata, K. and Kamitani, S. (2018) Expression, Purification and Crystallization of Thermostable Mutant of Cutinase Est1 from Thermobifida alba. Advances in Bioscience and Biotechnology, 9, 215-223. https://doi.org/10.4236/abb.2018.95015) unfortunately contains some mistakes. The author wishes to correct the errors. 展开更多
关键词 Erratum
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