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【判断题】
库存现金的主要作用是银行用来应付客户提现和银行本身的日常零星开支。因而,库存现金是一种固定资产。
A.
正确
B.
错误
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参考答案:
举一反三
【简答题】轴对称位移对应的 一定是轴对称的。
【单选题】真核细胞中对α - 鹅膏蕈碱不敏感的 RNA 合成是( )。
A.
rRNA
B.
hnRNA
C.
tRNA
D.
sn RNA
【多选题】教育信息化的特征表现在
A.
发展层面
B.
教育层面
C.
技术层面
D.
设计层面
【单选题】在真核细胞中,对α-鹅膏蕈碱不敏感的RNA合成是( )。
A.
rRNA
B.
hnRNA
C.
tRNA
D.
snRNA
【单选题】SQL 中“DELETE FROM 表名”表示( )
A.
从基本表中删除重复元组
B.
从基本表中删除所有属性
C.
从数据库中撤消这个基本表
D.
从基本表中删除所有元组
【多选题】1Z306010-2-3 根据《安全生产许可证条例》,国家对( )实行安全生产许可制度。
A.
矿山企业
B.
建筑施工企业
C.
日用化学品生产、经营、存储单位
D.
危险化学品生产、经营、存储单位
E.
烟花爆竹、民用爆破器材生产企业
【单选题】下列选项中( )不是体育暴力形成的体育因素。
A.
项目的差异
B.
比赛的结构
C.
裁判员的误判
D.
运动员情绪失控
【多选题】教育信息化的特征是()
A.
数字化
B.
网络化
C.
信息化
D.
虚拟化
E.
智能化
【单选题】How does liver X receptor (LXR) regulate the metabolism of fatty acids, sterols, and glucose?
A.
LXR is a nuclear transcription factor activated by oxysterol ligands (reflecting high cholesterol levels), which integrates the metabolism of fatty acids, sterols, and glucose. LXRα is expressed primarily in liver, adipose tissue, and macrophages; LXRβ is present in all tissues.
B.
When bound to an oxysterol ligand, LXRs form heterodimers with a second type of nuclear receptor, the retinoid X receptors (RXR), and the LXR-RXR dimer activates transcription from a set of genes, including those for acetyl-CoA carboxylase, the first enzyme in fatty acid synthesis; fatty acid synthase; the cytochrome P-450 enzyme CYP7A1, required for sterol conversion to bile acids; apoproteins that participate in cholesterol transport (apoC-I, apoC-II, apoD, and apoE); the ATP-binding cassette (ABC) transporters ABCA1 and ABCG1, required for reverse cholesterol transport (see below); GLUT4, the insulin-stimulated glucose transporter of muscle and adipose tissue; and an SREBP called SREBP1
C.
The transcriptional regulators LXR and SREBP therefore work together to achieve and maintain cholesterol homeostasis; SREBPs are activated by low levels of cellular cholesterol, and LXRs are activated by high cholesterol levels.
D.
Regulation by LXRs is complemented by the activity of farnesoid X receptor (FXR), which also forms a heterodimer with RXR, with an effect that is often reciprocal to that of LXR-RXR. Although farnesol is a ligand for this receptor, FXR responds primarily to bile acids. High levels of bile acids can be toxic. FXR, expressed mainly in the intestine, liver, kidney, and adrenal glands, provides essential control of bile acid levels by increasing or decreasing expression of multiple genes.
【简答题】教育信息化的特征是:
相关题目:
【单选题】How does liver X receptor (LXR) regulate the metabolism of fatty acids, sterols, and glucose?
A.
LXR is a nuclear transcription factor activated by oxysterol ligands (reflecting high cholesterol levels), which integrates the metabolism of fatty acids, sterols, and glucose. LXRα is expressed primarily in liver, adipose tissue, and macrophages; LXRβ is present in all tissues.
B.
When bound to an oxysterol ligand, LXRs form heterodimers with a second type of nuclear receptor, the retinoid X receptors (RXR), and the LXR-RXR dimer activates transcription from a set of genes, including those for acetyl-CoA carboxylase, the first enzyme in fatty acid synthesis; fatty acid synthase; the cytochrome P-450 enzyme CYP7A1, required for sterol conversion to bile acids; apoproteins that participate in cholesterol transport (apoC-I, apoC-II, apoD, and apoE); the ATP-binding cassette (ABC) transporters ABCA1 and ABCG1, required for reverse cholesterol transport (see below); GLUT4, the insulin-stimulated glucose transporter of muscle and adipose tissue; and an SREBP called SREBP1
C.
The transcriptional regulators LXR and SREBP therefore work together to achieve and maintain cholesterol homeostasis; SREBPs are activated by low levels of cellular cholesterol, and LXRs are activated by high cholesterol levels.
D.
Regulation by LXRs is complemented by the activity of farnesoid X receptor (FXR), which also forms a heterodimer with RXR, with an effect that is often reciprocal to that of LXR-RXR. Although farnesol is a ligand for this receptor, FXR responds primarily to bile acids. High levels of bile acids can be toxic. FXR, expressed mainly in the intestine, liver, kidney, and adrenal glands, provides essential control of bile acid levels by increasing or decreasing expression of multiple genes.
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