hKHK
品系全名
C57BL/6JSmo-Khktm1(hKHK)Smoc
目录号
NM-HU-233514
品系状态
活体
基因信息
基因名
Khk
品系描述
验证数据

Fig.1 Detection of KHK expression in liver, kidney and small intestine by RT-PCR. Mouse Khk mRNA (165 bp) was detectable only in wild-type C57BL/6 mice. Human KHK mRNA (183 bp) was detectable only in homozygous hKHK knockin mice but not in wild-type mice. Liver, kidney and small intestine RNA was extracted from 6-week-old female wild-type C57BL/6 (WT)(n=3) and homozygous hKHK knockin mice (HO) (n=3), then cDNA libraries were synthesized by reverse transcription, followed by PCR with mRNA primers.
Abbr. M, marker; HO, homozygous; WT, wild type.

Fig.2 Detection of KHK expression in liver, kidney and small intestine by qPCR. Mouse Khk mRNA was detectable only in wild-type C57BL/6 mice. Human KHK mRNA was detectable only in homozygous hKHK knockin mice but not in wild-type mice. Liver, kidney and small intestine RNA were extracted from 6-week-old female wild-type C57BL/6 (WT)(n=3) and homozygous hKHK knockin mice (HO) (n=3), then cDNA libraries were synthesized by reverse transcription, followed by qPCR with human KHK, mouse Khk and mouse Gapdh primers. Relative expression represents the human KHK mRNA level relative to its average expression in homozygous hKHK knockin mice. Relative expression represents the mouse Khk mRNA level relative to its average expression in wild-type mice.
Abbr. M, marker; HO, homozygous; WT, wild type.

Fig.3 Detection of KHK expression in hKHK mice by WB. KHK was detectable in liver and kidney from both WT C57BL/6 and HO hKHK mice , as the antibody was cross-reactived between human and mouse KHK. The liver and kidney tissue lysates were collected from 7-week-old male wild-type C57BL/6 mice and 7-week-old male homozygous hKHK mice, and then analyzed by western blot with anti-KHK antibody.
Abbr. HO, homozygous; WT, wild type; PC, positive control, HepG2 cells.
你也可能感兴趣
Tamoxifen诱导Cre-ERT2小鼠 使用指南
Cre-ERT2在无Tamoxifen诱导的情况下,在细胞质内处于无活性状态;当Tamoxifen诱导后,Tamoxifen的代谢产物4-OHT(雌激素类似物)与ERT结合,可使Cre-ERT2进核发挥Cre重组酶活性。
查看Cre-lox系统介绍及使用汇总
你一定听说过Cre-lox重组系统,无论你是否直接进行过基因操作。由于Cre-lox系统具有操作简单、重组率高的优点,如今已经成为体内外遗传操作的强有力工具。利用Cre-lox系统,可以在特定细胞、组织或整个生物体,甚至在特定时间点敲除或表达某个基因,实现对特定基因的时空特异性操作,这对基因功能的研究和人类疾病动物模型的建立都具有深刻影响。
查看
