Biosynthesisofsphingolipids
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Biosynthesis-of-neurotransmitters
Neurotransmitters are signaling molecules used by neurons to communicate across chemical synapses. The receptors for neurotransmitters include G-prote
Biosynthesis-of-isoleucine
Isoleucine is an essential amino acid, only synthesized in plants and bacteria, and required in the diet by animals. In proteins, the hydrophobic isol
Biosynthesis-of-Glycine-and-Serine
Intermediates in energy production pathways such as glycolysis and the Kreb's cycle are commonly the starting point for the biosynthesis of amino
Biosynthesis-of-threonine-and-methionine
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Biosynthesis-and-Analysis-of-Bilins
The term bilin is a collective one to describe a broad group of open chain tetrapyrroles and derives from the name “bile pigments” as the first of
Biosynthesis-of-spermidine-and-spermine
The polyamines spermidine and spermine are expressed in a variety of tissues and are involved in the regulation of apoptosis, cellular proliferation,
Biosynthesis-of-Cysteine-in-mammals
In animals, the sulfur-containing amino acid cysteine is synthesized from homocysteine, which is itself derived from metabolism of the amino acid meth
Biosynthesis-of-Proline-in-Bacteria
Among the twenty amino acids encoded by the genetic code, proline is unique in having a cyclic structure with its side chain connected to the amino gr
Phosphatidylcholine-Biosynthesis-Pathway
The main components of biological membranes are phosphoglyceride lipids composed of a glycerol unit esterified to two fatty acids and a polar alcohol
Biosynthesis-of-Chorismate-in-Bacteria-and-Plants
The biosynthesis of all three aromatic amino acids (tryptophan, tyrosine and phenylalanine) begins with the metabolic intermediate chorismate. The bio
Biosynthesis-of-Tryptophan-in-Bacteria-and-Plants
The aromatic amino acid tryptophan is an essential nutrient, meaning that humans and animals do not themselves have the biosynthetic machinery to synt
Biosynthesis-of-Cysteine-from-serine-in-bacteria-and-plants
In animals cysteine is synthesized from homocysteine, a produce of the essential amino acid methionine. In the absence of dietary methionine, animals
Phospholipid-Biosynthesis-in-E.-Coli-Pathway
The biosynthesis of membrane phospholipids occurs through distinct pathways in mammals and bacteria. In the mammalian pathway for the synthesis of pho
什么是膜筏?
细胞膜上存有一种以鞘脂(sphingolipids)和胆固醇(Ch)为基本成分的微域(micro-domain),鞘脂所含长的多饱和脂酰链呈高度有序排列,在其紧密填充之间又散布大量胆固醇。
专化性的麦角甾醇合成抑制剂
α-Bisabolol from Chamomile – A specific ergosterol biosynthesis inhibitor? SummaryThere is a strong need for new antifungal agents with a differen
FXR-and-LXR-Regulation-of-Cholesterol-Metabolism
Cholesterol is essential for life and a key in the development of heart disease. Cholesterol homeostasis is achieved through regulation of cholesterol
关于异染性脑白质退化症的简介
异染性脑白质退化症(Metachromatic leukodystrophy、MLD,亦称:异染性脑白质营养不良、芳香基硫酸酯酶A缺乏症)为一种溶酶体贮积症(lysosomal storage disease),一般归于脑白质营养不良(leukodystrophies)的类别、同于鞘脂类代谢障碍
Shuttle-for-transfer-of-acetyl-groups-from-mitochondria-to-the-cytosol
Acetyl-CoA is produced in mitochondria through the metabolism of fatty acids and the oxidation of pyruvate to acetyl-CoA. When ATP is needed, this ace
鞘脂的基本信息
鞘脂(sphingolipids)一类含有鞘氨醇骨架的两性脂,一端连接着一个长链的脂肪酸,另一端为一个极性的醇。鞘脂包括鞘磷脂、神经节苷脂等,一般存在于植物和动物膜内,尤其是在中枢神经系统的组织内含量丰富。又称鞘磷脂、鞘氨醇磷脂或神经磷脂·由鞘氨醇、脂肪酸与磷酰胆碱组成的分子,它是鞘磷脂类的典型代表
关于鞘脂的基本信息介绍
鞘脂(sphingolipids)一类含有鞘氨醇骨架的两性脂,一端连接着一个长链的脂肪酸,另一端为一个极性的醇。鞘脂包括鞘磷脂、神经节苷脂等,一般存在于植物和动物膜内,尤其是在中枢神经系统的组织内含量丰富。又称鞘磷脂、鞘氨醇磷脂或神经磷脂·由鞘氨醇、脂肪酸与磷酰胆碱组成的分子,它是鞘磷脂类的典型
鞘脂的结构和功能
鞘脂(sphingolipids)一类含有鞘氨醇骨架的两性脂,一端连接着一个长链的脂肪酸,另一端为一个极性的醇。鞘脂包括鞘磷脂、神经节苷脂等,一般存在于植物和动物膜内,尤其是在中枢神经系统的组织内含量丰富。又称鞘磷脂、鞘氨醇磷脂或神经磷脂·由鞘氨醇、脂肪酸与磷酰胆碱组成的分子,它是鞘磷脂类的典型代表
Synthesis-of-plasmalogens
Plasmalogens are a class of glycerophospholipids that contain one vinyl-ester linked long chain alcohol group in place of one ester-linked fatty acid
国际知名品牌Echelon与百灵威开展战略合作
2009年百灵威与Echelon Biosciences正式签署战略合作协议。百灵威作为Echelon在中国地区的独家代理服务机构,全权负责Echelon在中国市场的产品销售、技术应用与支持等各项业务。百灵威始终秉承“资源共享,共同发展” 之理念,一如既往地为中国化学行业广大科研和生产用
Oxidative-reactions-of-the-pentose-phosphate-pathway
One form of chemical energy used to drive biosynthetic reactions forward is the reducing power of the energy carrier NADPH. NADPH is essential to driv