Patents by Inventor Masami Osabe

Masami Osabe has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10017756
    Abstract: What is aimed at is provision of an inexpensive and efficient saccharification method for lignocellulose using a thermostable xylanase and provision of a mutant xylanase that has a substitute amino acid residue, and that exhibits stable activity even under severe conditions in which enzymes easily inactivate, and that provides an initial rate of reaction not significantly reduced as compared to a wild-type xylanase corresponding to the mutant xylanase. Provided is a method of producing a saccharified product of lignocellulose, including contacting a lignocellulosic raw material with a thermostable xylanase, and a mutant xylanase that provides an initial rate of reaction that is at least 70% of that provided by a wild-type xylanase corresponding thereto, that has a xylanase activity after heat treatment at 50° C. for 24 hours that is at least 50% of its xylanase activity before the heat treatment, and that has a substitute amino acid residue.
    Type: Grant
    Filed: January 3, 2017
    Date of Patent: July 10, 2018
    Assignees: MITSUI CHEMICALS, INC., MEIJI SEIKA PHARMA CO., LTD.
    Inventors: Hisaaki Yanai, Hiroki Tamai, Masami Osabe, Fumikazu Yokoyama, Kaoru Okakura, Atsushi Inoue
  • Publication number: 20170107502
    Abstract: What is aimed at is provision of an inexpensive and efficient saccharification method for lignocellulose using a thermostable xylanase and provision of a mutant xylanase that has a substitute amino acid residue, and that exhibits stable activity even under severe conditions in which enzymes easily inactivate, and that provides an initial rate of reaction not significantly reduced as compared to a wild-type xylanase corresponding to the mutant xylanase. Provided is a method of producing a saccharified product of lignocellulose, including contacting a lignocellulosic raw material with a thermostable xylanase, and a mutant xylanase that provides an initial rate of reaction that is at least 70% of that provided by a wild-type xylanase corresponding thereto, that has a xylanase activity after heat treatment at 50° C. for 24 hours that is at least 50% of its xylanase activity before the heat treatment, and that has a substitute amino acid residue.
    Type: Application
    Filed: January 3, 2017
    Publication date: April 20, 2017
    Applicants: MITSUI CHEMICALS, INC., MEIJI SEIKA PHARMA CO., LTD.
    Inventors: Hisaaki YANAI, Hiroki TAMAI, Masami OSABE, Fumikazu YOKOYAMA, Kaoru OKAKURA, Atsushi INOUE
  • Patent number: 9567617
    Abstract: What is aimed at is provision of an inexpensive and efficient saccharification method for lignocellulose using a thermostable xylanase and provision of a mutant xylanase that has a substitute amino acid residue, and that exhibits stable activity even under severe conditions in which enzymes easily inactivate, and that provides an initial rate of reaction not significantly reduced as compared to a wild-type xylanase corresponding to the mutant xylanase. Provided is a method of producing a saccharified product of lignocellulose, including contacting a lignocellulosic raw material with a thermostable xylanase, and a mutant xylanase that provides an initial rate of reaction that is at least 70% of that provided by a wild-type xylanase corresponding thereto, that has a xylanase activity after heat treatment at 50° C. for 24 hours that is at least 50% of its xylanase activity before the heat treatment, and that has a substitute amino acid residue.
    Type: Grant
    Filed: February 12, 2016
    Date of Patent: February 14, 2017
    Assignees: MITSUI CHEMICALS, INC., MEIJI SEIKA PHARMA CO., LTD.
    Inventors: Hisaaki Yanai, Hiroki Tamai, Masami Osabe, Fumikazu Yokoyama, Kaoru Okakura, Atsushi Inoue
  • Patent number: 9394554
    Abstract: What is aimed at is provision of an inexpensive and efficient saccharification method for lignocellulose using a thermostable xylanase and provision of a mutant xylanase that has a substitute amino acid residue, and that exhibits stable activity even under severe conditions in which enzymes easily inactivate, and that provides an initial rate of reaction not significantly reduced as compared to a wild-type xylanase corresponding to the mutant xylanase. Provided is a method of producing a saccharified product of lignocellulose, including contacting a lignocellulosic raw material with a thermostable xylanase, and a mutant xylanase that provides an initial rate of reaction that is at least 70% of that provided by a wild-type xylanase corresponding thereto, that has a xylanase activity after heat treatment at 50° C. for 24 hours that is at least 50% of its xylanase activity before the heat treatment, and that has a substitute amino acid residue.
    Type: Grant
    Filed: November 22, 2012
    Date of Patent: July 19, 2016
    Assignees: Mitsui Chemicals, Inc., Meiji Seika Pharma Co., Ltd.
    Inventors: Hisaaki Yanai, Hiroki Tamai, Masami Osabe, Fumikazu Yokoyama, Kaoru Okakura, Atsushi Inoue
  • Publication number: 20160168555
    Abstract: What is aimed at is provision of an inexpensive and efficient saccharification method for lignocellulose using a thermostable xylanase and provision of a mutant xylanase that has a substitute amino acid residue, and that exhibits stable activity even under severe conditions in which enzymes easily inactivate, and that provides an initial rate of reaction not significantly reduced as compared to a wild-type xylanase corresponding to the mutant xylanase. Provided is a method of producing a saccharified product of lignocellulose, including contacting a lignocellulosic raw material with a thermostable xylanase, and a mutant xylanase that provides an initial rate of reaction that is at least 70% of that provided by a wild-type xylanase corresponding thereto, that has a xylanase activity after heat treatment at 50° C. for 24 hours that is at least 50% of its xylanase activity before the heat treatment, and that has a substitute amino acid residue.
    Type: Application
    Filed: February 12, 2016
    Publication date: June 16, 2016
    Applicants: Mitsui Chemicals, Inc., Meiji Seika Pharma Co., Ltd.
    Inventors: Hisaaki YANAI, Hiroki TAMAI, Masami OSABE, Fumikazu YOKOYAMA, Kaoru OKAKURA, Atsushi INOUE
  • Publication number: 20140322764
    Abstract: What is aimed at is provision of an inexpensive and efficient saccharification method for lignocellulose using a thermostable xylanase and provision of a mutant xylanase that has a substitute amino acid residue, and that exhibits stable activity even under severe conditions in which enzymes easily inactivate, and that provides an initial rate of reaction not significantly reduced as compared to a wild-type xylanase corresponding to the mutant xylanase. Provided is a method of producing a saccharified product of lignocellulose, including contacting a lignocellulosic raw material with a thermostable xylanase, and a mutant xylanase that provides an initial rate of reaction that is at least 70% of that provided by a wild-type xylanase corresponding thereto, that has a xylanase activity after heat treatment at 50° C. for 24 hours that is at least 50% of its xylanase activity before the heat treatment, and that has a substitute amino acid residue.
    Type: Application
    Filed: November 22, 2012
    Publication date: October 30, 2014
    Inventors: Hisaaki Yanai, Hiroki Tamai, Masami Osabe, Fumikazu Yokoyama, Kaoru Okakura, Atsushi Inoue
  • Publication number: 20120244579
    Abstract: A monosaccharide production method of producing a monosaccharide from a lignocellulosic raw material comprising: obtaining a saccharified liquid obtained from a lignocellulosic raw material and a saccharification enzyme; recovering the saccharification enzyme from the saccharified liquid by allowing the saccharification enzyme to be adsorbed on the lignocellulosic raw material; and saccharifying the lignocellulosic raw material using the recovered saccharification enzyme.
    Type: Application
    Filed: November 25, 2010
    Publication date: September 27, 2012
    Inventors: Kazuya Matsumoto, Masami Osabe, Ryota Fujii, Seiichi Watanabe, Ayako Endo, Sakurako Kimura, Tadashi Araki, Akira Nakayama
  • Patent number: 6869788
    Abstract: This invention provides a novel D-aminoacylase obtained by cloning a DNA encoding the novel D-aminoacylase from Methylobacterium mesophilicum MT 10894, etc. and which shows sufficiently high activity at an industrially useful substrate concentration to allow a D-amino acid to be efficiently produced from an N-acyl-DL-amino acid; a DNA encoding the D-aminoacylase; a process for producing a D-amino acid from the corresponding N-acylamino acid using a transformant containing the DNA.
    Type: Grant
    Filed: February 1, 2002
    Date of Patent: March 22, 2005
    Assignee: Mitsui Chemicals, Inc.
    Inventors: Masami Osabe, Katsuyuki Takahashi, Toshifumi Yamaki, Teruo Arii, Toshihiro Oikawa
  • Publication number: 20030207436
    Abstract: This invention provides a novel D-aminoacylase obtained by cloning a DNA encoding the novel D-aminoacylase from Methylobacterium mesophilicum MT 10894, etc. and which shows sufficiently high activity at an industrially useful substrate concentration to allow a D-amino acid to be efficiently produced from an N-acyl-DL-amino acid; a DNA encoding the D-aminoacylase; a process for producing a D-amino acid from the corresponding N-acylamino acid using a transformant containing the DNA.
    Type: Application
    Filed: September 30, 2002
    Publication date: November 6, 2003
    Inventors: Masami Osabe, Katsuyuki Takahashi, Toshifumi Yamaki, Teruo Arii, Toshihiro Oikawa
  • Patent number: 6333427
    Abstract: A purified N-t-butoxycarbonylphenylalanine ester preparation having an enhanced optical activity can be obtained by bringing an N-t-butoxycarbonylphenylalanine ester preparation containing an optically active compound into contact with an aliphatic hydrocarbon, extracting the optically active compound with the aliphatic hydrocarbon, and recovering the optically active compound from the resulting extract.
    Type: Grant
    Filed: February 22, 2000
    Date of Patent: December 25, 2001
    Assignee: Mitsui Chemicals, Inc.
    Inventors: Hitoki Miyake, Masami Osabe, Mitsuo Koito, Setsuo Yoshino, Nobuhiro Fukuhara