Phenylalanine (BioDeep_00000398010)

Main id: BioDeep_00000000351

Secondary id: BioDeep_00000229695

natural product PANOMIX_OTCML-2023 BioNovoGene_Lab2019


代谢物信息卡片


(2S)-2-amino-3-phenylpropanoic acid

化学式: C9H11NO2 (165.079)
中文名称: DL-苯丙氨酸, L-苯丙氨酸, L-苯基丙氨酸
谱图信息: 最多检出来源 Homo sapiens(blood) 13.61%

分子结构信息

SMILES: C1=CC=C(C=C1)CC(C(=O)O)N
InChI: InChI=1S/C9H11NO2/c10-8(9(11)12)6-7-4-2-1-3-5-7/h1-5,8H,6,10H2,(H,11,12)

描述信息

An aromatic amino acid that is alanine in which one of the methyl hydrogens is substituted by a phenyl group.
Annotation level-2
Acquisition and generation of the data is financially supported by the Max-Planck-Society
COVID info from PDB, Protein Data Bank
Corona-virus
Coronavirus
SARS-CoV-2
COVID-19
SARS-CoV
COVID19
SARS2
SARS
IPB_RECORD: 2701; CONFIDENCE confident structure
L-Phenylalanine ((S)-2-Amino-3-phenylpropionic acid) is an essential amino acid isolated from Escherichia coli. L-Phenylalanine is a α2δ subunit of voltage-dependent Ca+ channels antagonist with a Ki of 980 nM. L-phenylalanine is a competitive antagonist for the glycine- and glutamate-binding sites of N-methyl-D-aspartate receptors (NMDARs) (KB of 573 μM ) and non-NMDARs, respectively. L-Phenylalanine is widely used in the production of food flavors and pharmaceuticals[1][2][3][4].
L-Phenylalanine ((S)-2-Amino-3-phenylpropionic acid) is an essential amino acid isolated from Escherichia coli. L-Phenylalanine is a α2δ subunit of voltage-dependent Ca+ channels antagonist with a Ki of 980 nM. L-phenylalanine is a competitive antagonist for the glycine- and glutamate-binding sites of N-methyl-D-aspartate receptors (NMDARs) (KB of 573 μM ) and non-NMDARs, respectively. L-Phenylalanine is widely used in the production of food flavors and pharmaceuticals[1][2][3][4].
L-Phenylalanine ((S)-2-Amino-3-phenylpropionic acid) is an essential amino acid isolated from Escherichia coli. L-Phenylalanine is a α2δ subunit of voltage-dependent Ca+ channels antagonist with a Ki of 980 nM. L-phenylalanine is a competitive antagonist for the glycine- and glutamate-binding sites of N-methyl-D-aspartate receptors (NMDARs) (KB of 573 μM ) and non-NMDARs, respectively. L-Phenylalanine is widely used in the production of food flavors and pharmaceuticals[1][2][3][4].

同义名列表

6 个代谢物同义名

Phenylalanine; DL-Phenylalanine; L-Phenylalanine; (2S)-2-amino-3-phenylpropanoic acid; L-Phenylalanine; Phenylalanine



数据库引用编号

101 个数据库交叉引用编号

分类词条

相关代谢途径

Reactome(0)

BioCyc(2)

PlantCyc(0)

代谢反应

0 个相关的代谢反应过程信息。

Reactome(0)

BioCyc(0)

WikiPathways(0)

Plant Reactome(0)

INOH(0)

PlantCyc(0)

COVID-19 Disease Map(0)

PathBank(0)

PharmGKB(0)

192 个相关的物种来源信息

在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:

  • PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
  • NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
  • Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
  • Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。

点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。

亚细胞结构定位 关联基因列表
Cytoplasm 6 AKT1, ALB, MTOR, PKM, PRKX, TNK1
Peripheral membrane protein 3 CYP1B1, MTOR, TNK1
Endosome membrane 1 INSR
Endoplasmic reticulum membrane 4 CD4, CYP1B1, HSP90B1, MTOR
Nucleus 6 AKT1, ALB, HSP90B1, MTOR, PKM, PRKX
cytosol 8 AKT1, ALB, HSP90B1, LIPE, MB, MTOR, PKM, TAT
dendrite 1 MTOR
phagocytic vesicle 1 MTOR
centrosome 1 ALB
nucleoplasm 4 AKT1, ATP2B1, MTOR, PRKX
Cell membrane 7 AKT1, ATP2B1, CD4, GPRC5A, INSR, ITGAM, LIPE
Cytoplasmic side 1 MTOR
lamellipodium 1 AKT1
Multi-pass membrane protein 3 ATP2B1, GPRC5A, RHO
Golgi apparatus membrane 1 MTOR
Synapse 1 ATP2B1
cell cortex 1 AKT1
cell surface 1 ITGAM
glutamatergic synapse 2 AKT1, ATP2B1
Golgi apparatus 2 ALB, RHO
Golgi membrane 2 MTOR, RHO
lysosomal membrane 1 MTOR
postsynapse 1 AKT1
presynaptic membrane 1 ATP2B1
smooth endoplasmic reticulum 1 HSP90B1
Cytoplasm, cytosol 1 LIPE
Lysosome 3 IL4I1, INSR, MTOR
acrosomal vesicle 1 IL4I1
plasma membrane 9 AKT1, ATP2B1, CD4, F2, GPRC5A, INSR, ITGAM, RHO, TNK1
synaptic vesicle membrane 1 ATP2B1
Membrane 10 AKT1, ATP2B1, CYP1B1, HSP90B1, INSR, ITGAM, LIPE, MTOR, RHO, TNK1
axon 1 INSR
basolateral plasma membrane 1 ATP2B1
caveola 2 INSR, LIPE
extracellular exosome 9 ALB, ATP2B1, F2, GPRC5A, HSP90B1, INSR, ITGAM, MB, PKM
Lysosome membrane 1 MTOR
endoplasmic reticulum 2 ALB, HSP90B1
extracellular space 4 ALB, F2, IGF1, ITGAM
perinuclear region of cytoplasm 1 HSP90B1
mitochondrion 2 CYP1B1, PKM
protein-containing complex 3 AKT1, ALB, HSP90B1
intracellular membrane-bounded organelle 3 ATP2B1, CYP1B1, GPRC5A
Microsome membrane 2 CYP1B1, MTOR
TORC1 complex 1 MTOR
TORC2 complex 1 MTOR
Single-pass type I membrane protein 3 CD4, INSR, ITGAM
Secreted 4 ALB, F2, IGF1, IL4I1
extracellular region 6 ALB, F2, HSP90B1, IGF1, IL4I1, PKM
Mitochondrion outer membrane 1 MTOR
mitochondrial outer membrane 1 MTOR
neuronal cell body membrane 1 INSR
anchoring junction 1 ALB
ciliary membrane 1 RHO
photoreceptor inner segment 1 RHO
photoreceptor outer segment 1 RHO
Cytoplasmic vesicle, secretory vesicle, synaptic vesicle membrane 1 ATP2B1
external side of plasma membrane 3 CD4, INSR, ITGAM
Extracellular vesicle 1 PKM
microtubule cytoskeleton 1 AKT1
nucleolus 1 GPRC5A
midbody 1 HSP90B1
sarcoplasm 1 MB
Early endosome 1 CD4
cell-cell junction 2 AKT1, RHO
vesicle 3 AKT1, GPRC5A, PKM
Membrane raft 2 CD4, ITGAM
focal adhesion 1 HSP90B1
spindle 1 AKT1
Nucleus, PML body 1 MTOR
PML body 1 MTOR
Mitochondrion intermembrane space 1 AKT1
mitochondrial intermembrane space 1 AKT1
collagen-containing extracellular matrix 3 F2, HSP90B1, PKM
lateral plasma membrane 1 ATP2B1
Late endosome 1 INSR
receptor complex 2 GPRC5A, INSR
ciliary basal body 2 AKT1, ALB
cilium 1 PKM
cell projection 1 ATP2B1
centriole 1 ALB
Cell projection, cilium, photoreceptor outer segment 1 RHO
Cytoplasmic vesicle, secretory vesicle, acrosome 1 IL4I1
spindle pole 1 ALB
blood microparticle 2 ALB, F2
sperm midpiece 2 IL4I1, RHO
Basolateral cell membrane 1 ATP2B1
nuclear envelope 1 MTOR
Endomembrane system 1 MTOR
Lipid droplet 1 LIPE
Membrane, caveola 1 LIPE
Cytoplasmic vesicle membrane 1 GPRC5A
specific granule membrane 1 ITGAM
tertiary granule membrane 1 ITGAM
Melanosome 1 HSP90B1
Golgi-associated vesicle membrane 1 RHO
Presynaptic cell membrane 1 ATP2B1
sperm plasma membrane 1 HSP90B1
exocytic vesicle 1 IGF1
plasma membrane raft 1 ITGAM
ficolin-1-rich granule lumen 1 PKM
secretory granule lumen 1 PKM
Golgi lumen 1 F2
endoplasmic reticulum lumen 4 ALB, CD4, F2, HSP90B1
platelet alpha granule lumen 2 ALB, IGF1
Photoreceptor inner segment membrane 1 RHO
immunological synapse 2 ATP2B1, IL4I1
clathrin-coated endocytic vesicle membrane 1 CD4
Sarcoplasmic reticulum lumen 1 HSP90B1
photoreceptor outer segment membrane 1 RHO
sperm head plasma membrane 1 RHO
dendrite membrane 1 INSR
Rough endoplasmic reticulum 1 PKM
Cytoplasmic vesicle, phagosome 1 MTOR
integrin complex 1 ITGAM
photoreceptor disc membrane 1 RHO
endocytic vesicle lumen 1 HSP90B1
T cell receptor complex 1 CD4
Cytoplasm, sarcoplasm 1 MB
alphav-beta3 integrin-IGF-1-IGF1R complex 1 IGF1
insulin-like growth factor binding protein complex 1 IGF1
insulin-like growth factor ternary complex 1 IGF1
integrin alphaM-beta2 complex 1 ITGAM
insulin receptor complex 1 INSR
endoplasmic reticulum chaperone complex 1 HSP90B1
rod photoreceptor outer segment 1 RHO
photoreceptor ribbon synapse 1 ATP2B1
[Isoform M2]: Cytoplasm 1 PKM
[Isoform M1]: Cytoplasm 1 PKM
ciliary transition fiber 1 ALB


文献列表

  • María A Brandan, Hugo A Pérez, Aníbal Disalvo, María de Los A Frías. Interaction of L-phenylalanine with carbonyl groups in mixed lipid membranes. Biochimica et biophysica acta. Biomembranes. 2024 Jun; 1866(5):184328. doi: 10.1016/j.bbamem.2024.184328. [PMID: 38688404]
  • Ruixiang Kang, Dong Guo, Jiawei Wang, Zhencong Xie. Association of dietary nutrient intake with type 2 diabetes: A Mendelian randomization study. Medicine. 2024 May; 103(19):e38090. doi: 10.1097/md.0000000000038090. [PMID: 38728475]
  • Xiao-Yu Zhang, Kai-Rou Xia, Ya-Ni Wang, Pei Liu, Er-Xin Shang, Cong-Yan Liu, Yu-Ping Liu, Ding Qu, Wei-Wen Li, Jin-Ao Duan, Yan Chen, Huang-Qin Zhang. Unraveling the pharmacodynamic substances and possible mechanism of Trichosanthis Pericarpium in the treatment of coronary heart disease based on plasma pharmacochemistry, network pharmacology and experimental validation. Journal of ethnopharmacology. 2024 May; 325(?):117869. doi: 10.1016/j.jep.2024.117869. [PMID: 38342153]
  • Zhengda Zhang, Jiao Dang, Luqiao Yuan, Yuhui Zhang, Fan Zhou, Tianlai Li, Xiaohui Hu. Exogenous 5-Aminolevulinic acid improved low-temperature tolerance tomato seedling by regulating starch content and phenylalanine metabolism. Plant physiology and biochemistry : PPB. 2024 May; 210(?):108083. doi: 10.1016/j.plaphy.2023.108083. [PMID: 38615441]
  • Alex H Crum, Lisa Philander, Lucas Busta, Ya Yang. Traditional medicinal use is linked with apparency, not specialized metabolite profiles in the order Caryophyllales. American journal of botany. 2024 Apr; 111(4):e16308. doi: 10.1002/ajb2.16308. [PMID: 38581167]
  • Chun Chu, Shengquan Liu, Liangui Nie, Hongming Hu, Yi Liu, Jun Yang. The interactions and biological pathways among metabolomics products of patients with coronary heart disease. Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie. 2024 Apr; 173(?):116305. doi: 10.1016/j.biopha.2024.116305. [PMID: 38422653]
  • Mette G B Pedersen, Nikolaj Rittig, Maj Bangshaab, Kristoffer Berg-Hansen, Nigopan Gopalasingam, Lars C Gormsen, Esben Søndergaard, Niels Møller. Effects of exogenous lactate on lipid, protein, and glucose metabolism-a randomized crossover trial in healthy males. American journal of physiology. Endocrinology and metabolism. 2024 Apr; 326(4):E443-E453. doi: 10.1152/ajpendo.00301.2023. [PMID: 38324259]
  • Yingjie Qin, Jiayi Chen, Dali Qian, Zhongyu Li, Licong Zhang, Qingquan Ma. Excessive Tryptophan and Phenylalanine Induced Pancreatic Injury and Glycometabolism Disorder in Grower-finisher Pigs. The Journal of nutrition. 2024 Apr; 154(4):1333-1346. doi: 10.1016/j.tjnut.2024.01.019. [PMID: 38582698]
  • Krystle Angelique A Santiago, Wei Chee Wong, You Keng Goh, Seng Heng Tey, Adeline Su Yien Ting. Pathogenicity of monokaryotic and dikaryotic mycelia of Ganoderma boninense revealed via LC-MS-based metabolomics. Scientific reports. 2024 03; 14(1):5330. doi: 10.1038/s41598-024-56129-8. [PMID: 38438519]
  • Huma Tabassum, Avijit Maity, Krishna Singh, Debanjan Bagchi, Abhinav Prasad, Anjan Chakraborty. Effect of Lipid Corona on Phenylalanine-Functionalized Gold Nanoparticles to Develop Stable and Corona-Free Systems. Langmuir : the ACS journal of surfaces and colloids. 2024 02; 40(8):4531-4543. doi: 10.1021/acs.langmuir.4c00019. [PMID: 38357868]
  • Xiaocui Chen, Xue Niu, Longju Li, Kuai Chen, Dandan Song, Biao Chen, Song Yang, Zhibing Wu. Design, Synthesis, and Target Identification of Novel Phenylalanine Derivatives by Drug Affinity Responsive Target Stability (DARTS) in Xanthomonas oryzae pv Oryzae. Journal of agricultural and food chemistry. 2024 Feb; 72(7):3436-3444. doi: 10.1021/acs.jafc.3c09267. [PMID: 38320759]
  • Kateryna Kukil, Pia Lindberg. Metabolic engineering of Synechocystis sp. PCC 6803 for the improved production of phenylpropanoids. Microbial cell factories. 2024 Feb; 23(1):57. doi: 10.1186/s12934-024-02330-3. [PMID: 38369470]
  • Thais Regina Mezzomo, Marcia Regina Messaggi Gomes Dias, Tatiane Santos, Rosana Marques Pereira. Dietary intake in individuals with phenylketonuria: an integrative review. Nutricion hospitalaria. 2024 Feb; 41(1):212-223. doi: 10.20960/nh.04579. [PMID: 37705455]
  • Sarathadevi Rajendran, Patrick Silcock, Phil Bremer. Volatile Organic Compounds (VOCs) Produced by Levilactobacillus brevis WLP672 Fermentation in Defined Media Supplemented with Different Amino Acids. Molecules (Basel, Switzerland). 2024 Feb; 29(4):. doi: 10.3390/molecules29040753. [PMID: 38398505]
  • Maria A Aksenova, Tatiana L Nechaeva, Evgenia A Goncharuk, Maria Y Zubova, Varvara V Kazantseva, Petr V Lapshin, Andrej Frolov, Natalia V Zagoskina. Changes in the Antioxidant Potential of Camellia sinensis Cultures under the Influence of Phenolic Precursors. Molecules (Basel, Switzerland). 2024 Jan; 29(2):. doi: 10.3390/molecules29020474. [PMID: 38257387]
  • Marlou L Dirks, Tom S O Jameson, Rob C Andrews, Mandy V Dunlop, Doaa R Abdelrahman, Andrew J Murton, Benjamin T Wall, Francis B Stephens. The impact of forearm immobilization and acipimox administration on muscle amino acid metabolism and insulin sensitivity in healthy, young volunteers. American journal of physiology. Endocrinology and metabolism. 2024 Jan; ?(?):. doi: 10.1152/ajpendo.00345.2023. [PMID: 38231001]
  • Zeyuan Zou, Qian Fan, Xiaochen Zhou, Xiumin Fu, Yongxia Jia, Hanxiang Li, Yinyin Liao. Biochemical Pathways of Salicylic Acid Derived from l-Phenylalanine in Plants with Different Basal SA Levels. Journal of agricultural and food chemistry. 2024 Jan; ?(?):. doi: 10.1021/acs.jafc.3c06939. [PMID: 38197566]
  • Jia Liu, Zhi-Dan Zhang, Chun-Xiao Lyu, Xi DU, Yu-Hong Huang. [Clinical metabolomics of Zicuiyin in treatment of diabetic kidney disease]. Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. 2024 Jan; 49(2):550-558. doi: 10.19540/j.cnki.cjcmm.20231010.501. [PMID: 38403329]
  • Gwangsu Shin, Soonsil Hyun, Dongwoo Kim, Yoonhwa Choi, Kyu Hong Kim, Dongmin Kim, Soie Kwon, Yon Su Kim, Seung Hee Yang, Jaehoon Yu. Cyclohexylalanine-Containing α-Helical Amphipathic Peptide Targets Cardiolipin, Rescuing Mitochondrial Dysfunction in Kidney Injury. Journal of medicinal chemistry. 2023 Dec; ?(?):. doi: 10.1021/acs.jmedchem.3c01578. [PMID: 38112308]
  • Jinxia Wu, Zhenchang Li, Hongwei Zhu, Yajie Chang, Quanquan Li, Jing Chen, Guiping Shen, Jianghua Feng. Childhood overweight and obesity: age stratification contributes to the differences in metabolic characteristics. Obesity (Silver Spring, Md.). 2023 Dec; ?(?):. doi: 10.1002/oby.23964. [PMID: 38112246]
  • Xuemin Chen, Tuo Zhang, Hanxiong Liu, Jiachen Zang, Chenyan Lv, Ming Du, Guanghua Zhao. Shape-Anisotropic Assembly of Protein Nanocages with Identical Building Blocks by Designed Intermolecular π-π Interactions. Advanced science (Weinheim, Baden-Wurttemberg, Germany). 2023 Dec; 10(35):e2305398. doi: 10.1002/advs.202305398. [PMID: 37870198]
  • Jorge El-Azaz, Bethany Moore, Yuri Takeda-Kimura, Ryo Yokoyama, Micha Wijesingha Ahchige, Xuan Chen, Matthew Schneider, Hiroshi A Maeda. Coordinated regulation of the entry and exit steps of aromatic amino acid biosynthesis supports the dual lignin pathway in grasses. Nature communications. 2023 11; 14(1):7242. doi: 10.1038/s41467-023-42587-7. [PMID: 37945591]
  • Zhongnan Chen, Zhigang Wang, Weihui Xu. Bacillus velezensis WB induces systemic resistance in watermelon against Fusarium wilt. Pest management science. 2023 Nov; ?(?):. doi: 10.1002/ps.7873. [PMID: 37939121]
  • Xia Zhu, Xueshan Yang, Liu Yang, Yan Fang, Yaping Jiang, Yongcai Li. Preharvest salicylic acid application improves the amino acid content and volatile profile in Vitis vinifera L. cv. Chardonnay during development. Plant physiology and biochemistry : PPB. 2023 Nov; 204(?):108103. doi: 10.1016/j.plaphy.2023.108103. [PMID: 37862932]
  • Abigail Loren Tung Uy, Atsushi Yamamoto, Mami Matsuda, Toshihiro Arae, Tomohisa Hasunuma, Taku Demura, Misato Ohtani. The Carbon Flow Shifts from Primary to Secondary Metabolism during Xylem Vessel Cell Differentiation in Arabidopsis thaliana. Plant & cell physiology. 2023 Oct; ?(?):. doi: 10.1093/pcp/pcad130. [PMID: 37875012]
  • Mario Mutz, Dominic Kösters, Benedikt Wynands, Nick Wierckx, Jan Marienhagen. Microbial synthesis of the plant natural product precursor p-coumaric acid with Corynebacterium glutamicum. Microbial cell factories. 2023 Oct; 22(1):209. doi: 10.1186/s12934-023-02222-y. [PMID: 37833813]
  • Yanan Li, Pingping Dong, Long Dai, Shaoping Wang. Untargeted and Targeted Metabolomics Reveal the Active Peptide of Eupolyphaga sinensis Walker against Hyperlipidemia by Modulating Imbalance in Amino Acid Metabolism. Molecules (Basel, Switzerland). 2023 Oct; 28(20):. doi: 10.3390/molecules28207049. [PMID: 37894528]
  • Zengwei Feng, Xiaolin Xie, Peidong Wu, Meng Chen, Yongqiang Qin, Yang Zhou, Honghui Zhu, Qing Yao. Phenylalanine-mediated changes in the soil bacterial community promote nitrogen cycling and plant growth. Microbiological research. 2023 Oct; 275(?):127447. doi: 10.1016/j.micres.2023.127447. [PMID: 37441843]
  • Meihong Zhang, Jinjia Zhang, Maoqi Hou, Shujuan Zhao. Comparative metabolomic and transcriptomic analysis of Saccharomyces cerevisiae W303a and CEN.PK2-1C. World journal of microbiology & biotechnology. 2023 Sep; 39(11):298. doi: 10.1007/s11274-023-03736-8. [PMID: 37661201]
  • Alyssa Paoletti, Paul B Pencharz, Ronald O Ball, Dehan Kong, Libai Xu, Rajavel Elango, Glenda Courtney-Martin. The dietary requirement for total sulfur amino acids in adults aged ≥60 years appears to be higher in males than in females. The American journal of clinical nutrition. 2023 09; 118(3):538-548. doi: 10.1016/j.ajcnut.2023.06.015. [PMID: 37356549]
  • Alicia B Merriam, Jenna M Malone, James P Hereward, Gurjeet Gill, Christopher Preston. Point mutations including a novel Pro-197-Phe mutation confer cross resistance to acetolactate synthase (ALS) inhibiting herbicides in Lactuca serriola in Australia. Pest management science. 2023 Aug; ?(?):. doi: 10.1002/ps.7743. [PMID: 37615238]
  • Cristini Milech, Priscila Ariane Auler, Marcelo Nogueira do Amaral, Simone Ribeiro Lucho, Jaqueline da Silva Dos Santos, Valcenir Júnior Mendes Furlan, Valmor João Bianchi, Eugenia Jacira Bolacel Braga. Biosynthesis of Betalains Elicited by Methyl Jasmonate in Two Species of Alternanthera Genus: Antagonistic Regulations Result in Increase of Pigments. Applied biochemistry and biotechnology. 2023 Aug; 195(8):4965-4982. doi: 10.1007/s12010-023-04535-5. [PMID: 37119502]
  • Tahrim Ramzan, Muhammad Shahbaz, Muhammad Faisal Maqsood, Usman Zulfiqar, Rafia Urooj Saman, Nian Lili, Muhammad Irshad, Sana Maqsood, Arslan Haider, Babar Shahzad, Abdel-Rhman Z Gaafar, Fasih Ullah Haider. Phenylalanine supply alleviates the drought stress in mustard (Brassica campestris) by modulating plant growth, photosynthesis, and antioxidant defense system. Plant physiology and biochemistry : PPB. 2023 Aug; 201(?):107828. doi: 10.1016/j.plaphy.2023.107828. [PMID: 37329687]
  • Kateryna Kukil, Elias Englund, Nick Crang, Elton P Hudson, Pia Lindberg. Laboratory evolution of Synechocystis PCC6803 for phenylpropanoid production. Metabolic engineering. 2023 Jun; ?(?):. doi: 10.1016/j.ymben.2023.06.014. [PMID: 37392984]
  • Katelyn M Duncan, Rhys C Trousdale, Cristina N Gonzales, William H Steel, Robert A Walker. l-Phenylalanine Partitioning Mechanisms in Model Biological Membranes. The journal of physical chemistry. B. 2023 06; 127(25):5633-5644. doi: 10.1021/acs.jpcb.2c08582. [PMID: 37315336]
  • Fan Zhang, Yunpeng Wang, Jingyang Yue, Rongrong Zhang, Yong-Er Hu, Ruoshi Huang, Ai-Jia Ji, B Andes Hess, Zhongqiu Liu, Lixin Duan, Ruibo Wu. Discovering a uniform functional trade-off of the CBC-type 2,3-oxidosqualene cyclases and deciphering its chemical logic. Science advances. 2023 06; 9(23):eadh1418. doi: 10.1126/sciadv.adh1418. [PMID: 37285431]
  • Nestor Vazquez-Agra, Silvia Fernandez-Crespo, Ana-Teresa Marques-Afonso, Anton Cruces-Sande, Sofia Barbosa-Gouveia, Miguel-Angel Martinez-Olmos, Alvaro Hermida-Ameijeiras. The correlation of lipid profile and waist circumference with phenylalanine levels in adult patients with classical phenylketonuria. Medicina clinica. 2023 05; 160(9):385-391. doi: 10.1016/j.medcli.2022.09.025. [PMID: 36628809]
  • Farah Al-Marzooq, Akela Ghazawi, Lana Daoud, Saeed Tariq. Boosting the Antibacterial Activity of Azithromycin on Multidrug-Resistant Escherichia coli by Efflux Pump Inhibition Coupled with Outer Membrane Permeabilization Induced by Phenylalanine-Arginine β-Naphthylamide. International journal of molecular sciences. 2023 May; 24(10):. doi: 10.3390/ijms24108662. [PMID: 37240007]
  • Yansi Xian, Yunyuan Nong, Yijie Gao, Yuangang Su, Zhiqiang Lei, Haoyu Lian, Jianwen Cheng, Jiamin Liang, Xiaoliang Feng, Zhijuan Liu, Jinmin Zhao, Tongling Zhao, Zhiheng Su, Qian Liu, Fangming Song. UPLC/Q-TOF-MS-based metabolomics evaluate the efficacy of oroxylin A against postmenopausal osteoporosis. Biomedical chromatography : BMC. 2023 May; 37(5):e5609. doi: 10.1002/bmc.5609. [PMID: 36811170]
  • Pedro Martínez-Rodríguez, M Alejandra Guerrero-Rubio, Samanta Hernández-García, Paula Henarejos-Escudero, Francisco García-Carmona, Fernando Gandía-Herrero. Characterization of betalain-loaded liposomes and its bioactive potential in vivo after ingestion. Food chemistry. 2023 May; 407(?):135180. doi: 10.1016/j.foodchem.2022.135180. [PMID: 36521390]
  • Julia T Tanzo, Veronica L Li, Amanda L Wiggenhorn, Maria Dolores Moya-Garzon, Wei Wei, Xuchao Lyu, Wentao Dong, Usman A Tahir, Zsu-Zsu Chen, Daniel E Cruz, Shuliang Deng, Xu Shi, Shuning Zheng, Yan Guo, Mario Sims, Monther Abu-Remaileh, James G Wilson, Robert E Gerszten, Jonathan Z Long, Mark D Benson. CYP4F2 is a human-specific determinant of circulating N-acyl amino acid levels. The Journal of biological chemistry. 2023 Apr; ?(?):104764. doi: 10.1016/j.jbc.2023.104764. [PMID: 37121548]
  • Tobias Schwanemann, Maike Otto, Benedikt Wynands, Jan Marienhagen, Nick Wierckx. A Pseudomonas taiwanensis malonyl-CoA platform strain for polyketide synthesis. Metabolic engineering. 2023 Apr; 77(?):219-230. doi: 10.1016/j.ymben.2023.04.001. [PMID: 37031949]
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