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Methionine biosynthesis and S-adenosylmethionine degradation during an induced morphogenesis of Candida albicans.

作者信息

Balish E

出版信息

Can J Microbiol. 1973 Jul;19(7):847-53. doi: 10.1139/m73-135.

DOI:10.1139/m73-135
PMID:4580452
Abstract
摘要

相似文献

1
Methionine biosynthesis and S-adenosylmethionine degradation during an induced morphogenesis of Candida albicans.白色念珠菌诱导形态发生过程中的甲硫氨酸生物合成与S-腺苷甲硫氨酸降解
Can J Microbiol. 1973 Jul;19(7):847-53. doi: 10.1139/m73-135.
2
S-adenosylmethionine metabolism by members of the genus Candida.念珠菌属成员对S-腺苷甲硫氨酸的代谢
Can J Microbiol. 1973 Oct;19(10):1297-303. doi: 10.1139/m73-208.
3
Induction and repression in the S-adenosylmethionine and methionine biosynthetic systems of Saccharomyces cerevisiae.酿酒酵母S-腺苷甲硫氨酸和甲硫氨酸生物合成系统中的诱导和阻遏
J Bacteriol. 1973 Nov;116(2):812-7. doi: 10.1128/jb.116.2.812-817.1973.
4
Methionine biosynthesis in Candida albicans. I. S-adenosyl-L-methionine (or S-methyl-L-methionine): homocysteine methyltransferase in cell-free extracts from yeast-like cells.
Can J Microbiol. 1971 Jun;17(6):795-802. doi: 10.1139/m71-126.
5
In vivo synthesis of sulfur containing amino acids in Candida albicans.白色念珠菌中含硫氨基酸的体内合成
Can J Microbiol. 1973 Feb;19(2):155-61. doi: 10.1139/m73-024.
6
Metabolism of S-adenosylmethionine in rat hepatocytes: transfer of methyl group from S-adenosylmethionine by methyltransferase reactions.大鼠肝细胞中S-腺苷甲硫氨酸的代谢:通过甲基转移酶反应从S-腺苷甲硫氨酸转移甲基基团。
Life Sci. 1985 Aug 19;37(7):665-72. doi: 10.1016/0024-3205(85)90434-5.
7
Role of S-adenosylmethionine in methionine biosynthesis in yeast.S-腺苷甲硫氨酸在酵母蛋氨酸生物合成中的作用。
J Bacteriol. 1967 Oct;94(4):966-71. doi: 10.1128/jb.94.4.966-971.1967.
8
The microbial biosynthesis of methionine.蛋氨酸的微生物合成。
Biochem J. 1972 May;127(5):845-53. doi: 10.1042/bj1270845.
9
Vitamin B12-dependent methionine synthesis in Rhizobium meliloti.苜蓿根瘤菌中依赖维生素B12的甲硫氨酸合成
Biochem Biophys Res Commun. 1974 Sep 23;60(2):723-8. doi: 10.1016/0006-291x(74)90300-3.
10
Enzymatic methylation of glycine using a cell free supernatant from rat liver.利用大鼠肝脏的无细胞上清液对甘氨酸进行酶促甲基化。
Life Sci II. 1972 Apr 8;11(7):381-7. doi: 10.1016/0024-3205(72)90078-1.

引用本文的文献

1
Isolation and identification of a 92-kDa stress induced protein from Candida albicans.白色念珠菌中一种92-kDa应激诱导蛋白的分离与鉴定
Mycopathologia. 1999;147(1):13-20. doi: 10.1023/a:1007036518330.
2
S-adenosylmethionine levels and protein methylation during morphogenesis of Mucor racemosus.总状毛霉形态发生过程中的S-腺苷甲硫氨酸水平与蛋白质甲基化
J Bacteriol. 1980 Apr;142(1):196-201. doi: 10.1128/jb.142.1.196-201.1980.
3
Strain variation and morphogenesis of yeast- and mycelial-phase Candida albicans in low-sulfate, synthetic medium.
低硫酸盐合成培养基中白色念珠菌酵母相和菌丝相的菌株变异与形态发生
J Bacteriol. 1980 May;142(2):714-9. doi: 10.1128/jb.142.2.714-719.1980.
4
Effect of norleucine on mycelial fragmentation in Cephalosporium acremonium.正亮氨酸对顶头孢霉中菌丝体断裂的影响。
Appl Environ Microbiol. 1976 Jan;31(1):143-5. doi: 10.1128/aem.31.1.143-145.1976.
5
Germ tube formation from zonal rotor fractions of Candida albicans.白色念珠菌区域转子组分的芽管形成
J Bacteriol. 1976 May;126(2):771-6. doi: 10.1128/jb.126.2.771-776.1976.
6
Lipid synthesis during reinitiation of growth from stationary phase cultures of Candida albicans.
Mycopathologia. 1979 Mar 30;67(1):39-43. doi: 10.1007/BF00436239.