ÆüËÜÇÀ·Ý²½³Ø²ñ 2025ǯÅÙÂç²ñ¥×¥í¥°¥é¥à¸¡º÷

¥×¥í¥°¥é¥à½¸PDF Âç²ñ¥È¥Ã¥×¥Ú¡¼¥¸¤ËÌá¤ë
¿ä¾©¥Ö¥é¥¦¥¶¡§Chrome¡¢FireFox¡¢Edge¡¢Safari
(Internet Explorer¤Ç¤ÏÀµ¤·¤¯É½¼¨¤µ¤ì¤Ê¤¤¾ì¹ç¤¬¤¢¤ê¤Þ¤¹)
Recommended browsers: Chrome, FireFox, Edge, Safari
(May not display correctly in Internet Explorer)

¹Ö±éÈÖ¹æ:3E¡¢Ê¬Îà:°ìÈÌ¹Ö±é ¤Î¸¡º÷·ë²Ì

1 - 15  / 153 <<< 1 2 3 4 5 6 7 8 9 10 ... >>>

1 - 15  / 153
<<< 1 2 3 4 5 6 7 8 9 10 ... >>>
3E001
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
Saccharomyces cerevisiae¤Ë¤ª¤±¤ë¥¹¥Æ¥í¡¼¥ëʬ»Ò¼ï¤ÎÌò³ä¤Ë´Ø¤¹¤ë¸¦µæ
Roles of sterol molecular speices in the yeast Saccharomyces cerevisiae
¡ûÂçÆâ ϯ¹¨1¡¢ËÙÆâ ͵Ƿ1,2¡¢Ê¡ÅÄ ÎÉ°ì1,2
¡ûAkihiro OUCHI1, Hiroyuki HORIUCHI1,2, Ryouichi FUKUDA1,2
1ÅìÂ籡¡¦ÇÀÀ¸²Ê¡¢2ÅìÂ硦ÈùÀ¸ÊªÏ¢·Èµ¡¹½
1Grad. Sch. Agric. and Life Sci., UTokyo, 2CRIIM, UTokyo
3E002
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
n-¥¢¥ë¥«¥ó»ñ²½¹ÚÊìYarrowia lipolytica¤Ë¤ª¤±¤ë¥Û¥¹¥Õ¥¡¥Á¥¸¥ë¥»¥ê¥ó¹çÀ®¹ÚÁǷ绳ô¤ÎÍÞ°µÊÑ°Û³ô¤Î²òÀÏ
Analysis of suppressor mutants of phosphatidylserine synthase deficient strain in the n-alkane assimilating yeast Yarrowia lipolytica
¡û¾¾À¥ ¾¡Ï¯1¡¢¸¶ ËüΤÊæ1¡¢´ä´Ö μ1,2¡¢ËÙÆâ ͵Ƿ1,2¡¢Ê¡ÅÄ ÎÉ°ì1,2
¡ûKATSURO MATSUSE1, MARIHO HARA1, RYO IWAMA1,2, HIROYUKI HORIUCHI1,2, RYOUICHI FUKUDA1,2
1ÅìÂ籡¡¦ÇÀÀ¸²Ê¡¦±þÀ¸¹©¡¢2ÅìÂ硦ÈùÀ¸ÊªÏ¢·Èµ¡¹½
1Dept. of Biotechnol., GSALS, UTokyo, 2CRIIM, UTokyo
3E003
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
GPI¡Ê¥°¥ê¥³¥·¥ë¥Û¥¹¥Õ¥¡¥Á¥¸¥ë¥¤¥Î¥·¥È¡¼¥ë¡Ë¥ê¥â¥Ç¥ê¥ó¥°¤Ë´Ø¤¹¤ë¿·µ¬°äÅÁ»Ò¤ÎƱÄê¤Èµ¡Ç½²òÀÏ
Identification and functional analysis of new genes related to GPI(glycosylphosphatidyl inositol) remodeling
¡û²Ö²¬ ϼù1¡¢¾¾±Ê ¶õÌé2¡¢ÃÓÅÄ ÆØ»Ò1¡¢Á¥¸Í ¹Ì°ì1
¡ûKazuki Hanaoka1, kuya Matsunaga2, Atsuko Ikeda1, Kouichi Funato1
1¹­ÅçÂ籡Åý¹çÀ¸Ì¿¡¢2¹­ÅçÂçÀ¸ÊªÀ¸»º
1Hiroshima Univ. Integrated Sciences for Life, 2Hiroshima Univ. Applied Biological Science
3E004
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
Acetobacter pasteurianus¤Ë¤ª¤±¤ë¥Û¥¹¥Õ¥¡¥Á¥¸¥ë¥³¥ê¥ó¤ÎÀ¸Íýµ¡Ç½²òÌÀ¤òÌܻؤ·¤¿²½³Ø¥×¥í¡¼¥Ö¤Î¹çÀ®
Synthesis of chemical probes to elucidate the physiological function of phosphatidylcholine in Acetobacter pasteurianus
¡ûÇ븶 ¿ò¸÷¡¢Ë­ÃÝ ÍÎͤ¡¢µÆ´Ö δ»Ö¡¢¼ã»³ ¼é¡¢ÉðÅÄ ÍÛ°ì
¡ûTAKAAKI HAGIWARA, YOSUKE TOYOTAKE, TAKASHI KIKUMA, MAMORU WAKAYAMA, YOICHI TAKEDA
Ω̿´ÛÂ籡À¸Ì¿²Ê³Ø
Ritsumeikan Univ.
3E005
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
¥Ú¥ó¥¿¥Ç¥«¥ó»À¤Ë¤è¤ëºÙ˦Æ⹽¤¤Ø¤ÎºîÍѥᥫ¥Ë¥º¥à¤Î²òÀÏ
Effects of pentadecanoic acid on membrane-bound organelles in fission yeast
¡ûÅÏÊÕ ¤¹¤º1¡¢Æ£ËÜ ¶Æ¸¼2¡¢¿å¾Â Àµ¼ù2¡¢µ×ÊÆ °ìµ¬2
¡ûSuzu WATANABE1, Takahiro FUJIMOTO2, Masaki MIZUNUMA2, Kazunori KUME2
1¹­Â繩¡¢2¹­Â籡
1Hiroshima Univ., 2Graduated School of Integrated Sciences for Life, Hiroshima Univ.
3E006
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
ÇÝÍÜ»þ¤ËÊѲ½¤¹¤ëÌý»éÀ¸»º¹ÚÊìLipomyces starkeyi¤Î»éËõå·ÁÂ֤ȲĻ벽ˡ
Morphology and Visualization Methods of Lipid Droplets in the Oleaginous Yeast Lipomyces starkeyi during Cultivation
¡û¹â¶¶ Í¥²Ö1¡¢»ÖÅÄ Íβð1¡¢Ãæ¼ ¾´¹¨1¡¢º´Æ£ Τ²Â»Ò2¡¢¹âµ× ÍζÇ2¡¢¾®³Þ¸¶ ¾Ä1
¡ûYuka TAKAHASHI1, Yosuke SHIDA1, Akihiro NAKAMURA1, Rikako SATO2, Hiroaki TAKAKU2, Wataru OGASAWARA1
1Ĺ²¬µ»Âç¡¢2¿·³ãÌôÂ硦±þÀ¸²Ê
1Nagaoka Univ. of Tech, 2Niigata Univ. Pham. Med. Life Sci.
3E007
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
½Ð²ê¹ÚÊì¤Î±Õ˦Ëì¤Ë¤ª¤±¤ë¥í¥É¥×¥·¥óȯ¸½¤¬¥¨¥Í¥ë¥®¡¼Âå¼Õ¤ËµÚ¤Ü¤¹±Æ¶Á¤Îɾ²Á
Evaluation of the effect of rhodopsin expression on the vacuolar membrane of budding yeast on energy metabolism
¡û¿ù»³ ÐÒè½°¡¡¢ÂçĹ ·°¡¢¹°Ç¸ ÍÛ»Ò¡¢¸¶ À¶·É
¡ûYuria SUGIYAMA, Kaoru DAICHO, Yoko HIRONO, Kiyotaka HARA
ÀŸ©Âç¿©±É
Univ. Shizuoka
3E008
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
½Ð²ê¹ÚÊìSaccharomyces cerevisiae¤Ë¤ª¤±¤ë¦Á-¥¢¥ì¥¹¥Á¥óRod1¤Ë¤è¤ëúÁǸ»Í¢Á÷ÂΤΥ°¥ë¥³¡¼¥¹ÉÔ³èÀ­²½¤Î²òÀÏ
Glucose inactivation of carbon source transporters by ¦Á-arrestin Rod1 in the budding yeast Saccharomyces cerevisiae
¡ûÃæ À»°¡¡¢Æ£ÅÄ æƵ®¡¢Âçµ×ÊÝ Â󳤡¢Ãæß· ²í¹¬¡¢¸ÞÌ£ ¾¡Ìé¡¢¿·Ã« ¾°¹°
¡ûSeia NAKA, Shoki FUJITA, Takumi OKUBO, Masayuki NAKAZAWA, Katsuya GOMI, Takahiro SHINTANI
ÅìËÌÂ籡ÇÀ
Tohoku¡¡Univ.
3E009
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
Thermus thermophilus¤ÎÀþÌÓ¿­½Ì¤Ë´Ø¤ï¤ëATP²Ã¿åʬ²ò¹ÚÁǤÈÆâËì¶Éºß¥¿¥ó¥Ñ¥¯¼Á¤ÎÁê¸ßºîÍѲòÀÏ
Interaction Analysis of ATPase Involved in pilus elongation and Retraction with Inner Membrane Proteins from Thermus thermophilus
¡û±§º´Èþ ͥǵ1¡¢Á°Àî ¿¿½ã1¡¢±¦ÅÄ ·Ã1¡¢¾®ÃÓ ¤¢¤æ¤ß1,2
¡ûHirono USAMI1, Masumi MAEKAWA1, Megumi MIGITA1, Ayumi KOIKE-TAKESHITA1,2
1¿ÀÆàÀÂ硦±¡¡¦¹©¡¢2¿ÀÆàÀÂ硦¥Ð¥¤¥ª¥á¥Ç¥£¥«¥ë¸¦µæ¥»¥ó¥¿¡¼
1Grad. Sch. Eng., Kanagawa Inst. of Tech, 2Biomed. Res. Ctr., Kanagawa Inst. of Tech
3E010
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
Ligilactobacillus agilis BKN88¤Ë¤ª¤±¤ë¥Õ¥é¥¸¥§¥ê¥óÅüº¿½¤¾þ´ØÏ¢°äÅÁ»Ò¤Îµ¡Ç½²òÀÏ
The functional analysis of flagellin glycosylation genes in Ligilactobacillus agilis BKN88
¡ûÁ긶 ¹¯Í¤1¡¢ÎëÌÚ ½ÙÌé2¡¢±ÝËÜ ¸µ1¡¢²£ÅÄ ·ò¼£1¡¢³áÀî ÍÈ¿½1
¡ûKOSUKE AIHARA1, SYUNYA SUZUKI2, GEN ENOMOTO1, KENJI YOKOTA1, AKINOBU KAJIKAWA1
1ÅìÇÀÂ籡ÇÀ²½¡¢2»ºÁí¸¦¡¦À¸Êª¥×¥í¥»¥¹
1Tokyo University of agriculture, 2AIST BPRI
3E011
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
¥Ò¥ÈIJ´ÉͳÍèLigilactobacillus ruminis ATCC 25644¤¬È¯¸½¤¹¤ë¤Ù¤óÌӤαê¾ÉͶƳºîÍÑ
Pro-inflammatory effects of flagellar antigens produced by the motile derivative of Lactobacillus ruminis ATCC 25644
¡û»°ùõ ºÌ1¡¢Á°Ìî ¿µÂÀϯ2¡¢±óÆ£ ÌÀ¿Î1¡¢º´¡¹ÌÚ ÂÙ»Ò3¡¢±ÝËÜ ¸µ1¡¢²£ÅÄ ·ò¼£1¡¢³áÀî ÍÈ¿½1
¡ûAya MISAKI1, Shintaro MAENO2, Akihito ENDO1, Yasuko SASAKI3, Gen ENOMOTO1, Kenji YOKOTA1, Akinobu KAJIKAWA1
1ÅìÇÀÂ籡±þÀ¸¡¢2»³¸ýÂçÇÀ¡¢3ÌÀ¼£ÂçÇÀ
1Tokyo Univ. Agr., 2Yamaguchi Univ., 3Meiji Univ.
3E012
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
Æý»À¶ÝCompanilactobacillus alimentarius KH4¤Î¥­¥·¥é¥ó¤ËÂФ¹¤ëÉÕÃ塦¶Å½¸¥á¥«¥Ë¥º¥à¤Î²òÀÏ
Analysis of xylan-mediated aggregation mechanism in Companilactobacillus alimentarius KH4
¡ûÌðÌî ¿óŵ¡¢¶â½Å æÆÂÀ¡¢»°°æ μ»Ê
¡ûTakanori YANO, Shota KANASHIGE, Ryoji MITSUI
²¬»³ÍýÂçÀ¸Ì¿²Ê
Okayama Univ. of Sci.
3E013
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
¹í¶ÝAspergillus oryzae¤Î¥Ì¥¯¥ì¥ª¥Õ¥¡¥¸¡¼¤Ë¤ª¤±¤ë±Õ˦ʬ²òµ¡¹½¤È³ÖÎ¥Ëì°ÂÄê²½¤ÎÌò³ä¤Î²òÀÏ
Analysis of the mechanism of vacuolar degradation and the role of the isolation membrane stabilization in nucleophagy of Aspergillus oryzae
¡û»³¸ý ÍÀÅÐ1¡¢Í­²¬ ³Ø1,2
¡ûHiroto YAMAGUCHI1, Manabu ARIOKA1,2
1ÅìÂ籡ÇÀ¡¦±þÀ¸¹©¡¢2ÅìÂ硦ÈùÀ¸ÊªÏ¢·Èµ¡¹½
1Dept. Biotechnol., Univ. Tokyo, 2CRIIM, UTokyo
3E014
2025/03/06 14:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
½Ð²ê¹ÚÊì¤Ç¥ª¡¼¥È¥Õ¥¡¥¸¡¼¤ò»ÏÆ°¤¹¤ëÈóËì·¿¥ª¥ë¥¬¥Í¥é¤Î¿Ê²½Åªµ¯¸»
Evolutionary Origin of Membraneless Organelles Initiating Autophagy in Budding Yeast
¡ûßÀ Í´ÂÀϺ1,2¡¢ÌîÅÄ Å¸À¸1,2
¡ûYutaro HAMA1,2, Nobuo NODA N.1,2
1ËÌÂ硦°äÀ©¸¦¡¢2Èù²½¸¦¡¦¹½Â¤À¸Êª
1Hokkaido Univ., 2Inst. Microb. Chem.
3E015
2025/03/06 13:15
¥Ý¥¹¥¿¡¼¡¦Å¸¼¨²ñ¾ì
¹í¶ÝAspergillus oryzae¤Ë¤ª¤±¤ë¼çÍ×¥ª¡¼¥È¥Õ¥¡¥¸¡¼¥¿¥ó¥Ñ¥¯¼ÁAtg8¤ËÁê¸ßºîÍѤ¹¤ë°ø»Ò¤Îõº÷
Screening of factors interacting with the core autophagy-related protein Atg8 in Aspergillus oryzae.
¡û´äº´ çýÜ¿¡¢ÉðÅÄ ÍÛ°ì¡¢µÆ´Ö δ»Ö
¡ûMaya IWASA, Yoichi TAKEDA, Takashi KIKUMA
Ω̿´ÛÂ籡À¸Ì¿²Ê³Ø
Ritsumeikan Univ.
1 - 15  / 153 <<< 1 2 3 4 5 6 7 8 9 10 ... >>>

1 - 15  / 153
<<< 1 2 3 4 5 6 7 8 9 10 ... >>>