推薦產品
產品名稱
O-琥珀酰-L-高丝氨酸,
化驗
≥98.0% (TLC)
品質等級
形狀
powder
技術
ligand binding assay: suitable
顏色
white
儲存溫度
−20°C
SMILES 字串
N[C@@H](CCOC(=O)CCC(O)=O)C(O)=O
InChI
1S/C8H13NO6/c9-5(8(13)14)3-4-15-7(12)2-1-6(10)11/h5H,1-4,9H2,(H,10,11)(H,13,14)/t5-/m0/s1
InChI 密鑰
GNISQJGXJIDKDJ-YFKPBYRVSA-N
儲存類別代碼
11 - Combustible Solids
水污染物質分類(WGK)
WGK 3
閃點(°F)
Not applicable
閃點(°C)
Not applicable
個人防護裝備
Eyeshields, Gloves, type N95 (US)
從最近期的版本中選擇一個:
分析證明 (COA)
Lot/Batch Number
Susan M Aitken et al.
Archives of biochemistry and biophysics, 433(1), 166-175 (2004-12-08)
The ability of enzymes to catalyze specific reactions, while excluding others, is central to cellular metabolism. Control of reaction specificity is of particular importance for enzymes that employ catalytically versatile cofactors, of which pyridoxal 5'-phosphate is a prime example. Cystathionine
Peng Liu et al.
Journal of biotechnology, 325, 164-172 (2020-11-07)
O-Succinyl-l-homoserine (OSH) is an important platform chemical in production of C4 chemicals such as succinic acid, homoserine lactone, γ‑butyrolactone, and 1,4‑butanediol. The production of OSH through chemical method or the current engineering strain is difficult and not optimal, and thereby
P Vermeij et al.
Journal of bacteriology, 181(18), 5833-5837 (1999-09-11)
Cysteine and methionine biosynthesis was studied in Pseudomonas putida S-313 and Pseudomonas aeruginosa PAO1. Both these organisms used direct sulfhydrylation of O-succinylhomoserine for the synthesis of methionine but also contained substantial levels of O-acetylserine sulfhydrylase (cysteine synthase) activity. The enzymes
M Foglino et al.
Microbiology (Reading, England), 141 ( Pt 2), 431-439 (1995-02-01)
The relationship between genes and enzymes in the methionine biosynthetic pathway has been studied in Pseudomonas aeruginosa. The first step is catalysed by an O-succinylhomoserine synthase, the product of the metA gene mapped at 20 min on the chromosome. The
Charles Ar Cotton et al.
eLife, 9 (2020-08-25)
The promiscuous activities of enzymes provide fertile ground for the evolution of new metabolic pathways. Here, we systematically explore the ability of E. coli to harness underground metabolism to compensate for the deletion of an essential biosynthetic pathway. By deleting
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