日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Delving Into the Depths of AGTR2: In Silico Identification of Deleterious Nonsynonymous SNPs Associated With Cardiovascular Diseases

深入探究AGTR2:利用计算机模拟鉴定与心血管疾病相关的有害非同义SNP

Waleed Iqbal, Muhammad; Shahab, Muhammad; Sun, Xinxiao; Akter, Shahina; Zheng, Guojun; Shazly, Gamal A; Bourhia, Mohammed; Dauelbait, Musaab; Yuan, Qipeng

The role of angiotensinogen, angiotensin II receptor type I and type II receptor polymorphisms (AGTR2 rs11091046, AGT rs699, AGTR1 rs5186, and AGT rs4762) in multiple myeloma

血管紧张素原、血管紧张素II受体I型和II型受体多态性(AGTR2 rs11091046、AGT rs699、AGTR1 rs5186和AGT rs4762)在多发性骨髓瘤中的作用

Serin, Istemi; Oyaci, Yasemin; Pehlivan, Sacide; Ertas, Elif; Tuncel, Fatma Ceren; Pehlivan, Mustafa

The rs1403543 Polymorphism of AGTR2, Which Encodes the Type-2 Angiotensin II Receptor, and Left Ventricular Mass in Polish Full-Term Newborns

编码 2 型血管紧张素 II 受体的 AGTR2 基因 rs1403543 多态性与波兰足月新生儿左心室质量的关系

Gorący, Iwona; Miler, Karol; Lewandowska, Klaudyna; Rychel, Monika; Łoniewska, Beata; Ciechanowicz, Andrzej

Sema4D deficiency enhances glucose tolerance through GLUT2 retention in hepatocytes

Sema4D 缺乏通过肝细胞中的 GLUT2 保留增强葡萄糖耐受性

Yanling Zhang #, Xiaomei Jiang #, Dongsong Wu, Hao Huang, Guiqing Jia, Gaoping Zhao

Ablation of glucosinolate accumulation in the oil crop Camelina sativa by targeted mutagenesis of genes encoding the transporters GTR1 and GTR2 and regulators of biosynthesis MYB28 and MYB29.

通过对编码转运蛋白 GTR1 和 GTR2 以及生物合成调节因子 MYB28 和 MYB29 的基因进行靶向诱变,消除油料作物亚麻荠中的硫代葡萄糖苷积累。

Targeted editing of multiple homologues of GTR1 and GTR2 genes provides the ideal low-seed, high-leaf glucosinolate oilseed mustard with uncompromised defence and yield

通过对GTR1和GTR2基因的多个同源基因进行靶向编辑,可以培育出理想的低籽粒、高叶片、富含硫代葡萄糖苷的油菜籽品种,同时保持其防御能力和产量不受影响。

Avni Mann #,Juhi Kumari #,Roshan Kumar,Pawan Kumar,Akshay K Pradhan,Deepak Pental,Naveen C Bisht

A functional mechanism for a non-coding variant near AGTR2 associated with risk for preterm birth.

AGTR2附近非编码变异与早产风险相关的功能机制。

Discrimination of GLUTs by Fructose Isomers Enables Simultaneous Screening of GLUT5 and GLUT2 Activity in Live Cells

通过果糖异构体区分 GLUT 可以同时筛选活细胞中的 GLUT5 和 GLUT2 活性

Nazar Gora, Lukasz J Weselinski, Vagarshak V Begoyan, Andrew Cooper, Jun-Yong Choe, Marina Tanasova

Crosstalk between TM4SF5 and GLUT8 regulates fructose metabolism in hepatic steatosis

TM4SF5 和 GLUT8 之间的相互作用调节肝脂肪变性中的果糖代谢

Hyejin Lee ,Eunmi Kim ,Eun-Ae Shin ,Jong Cheol Shon ,Hyunseung Sun ,Ji Eon Kim ,Jae Woo Jung ,Haesong Lee ,Yangie Pinanga ,Dae-Geun Song ,Kwang-Hyeon Liu ,Jung Weon Lee

c-JUN inhibits mTORC2 and glucose uptake to promote self-renewal and obesity

c-JUN抑制mTORC2和葡萄糖摄取,从而促进细胞自我更新和肥胖。

Raphael Serna ,Ambika Ramrakhiani ,Juan Carlos Hernandez ,Chia-Lin Chen ,Chad Nakagawa ,Tatsuya Machida ,Ratna B Ray ,Xiaohang Zhan ,Stanley M Tahara ,Keigo Machida