Inteum Company
Links
seedsprint
Visible Legacy
RSS
News & Resources
Inteum Company News
Inteum Library
Subscribe
Search Results - sirt1
3
Results
Sort By:
Published Date
Updated Date
Title
ID
Descending
Ascending
Sirt1
LoxP (Sirt1tm1Cxd) Mouse Model for Metabolism and Hepatology Studies
Generation of floxed Sirtuin 1 Exon5-Exon6 for the construction of conditional knockout mice. Sirtuin 1 (
Sirt1
), a homolog of yeast Sir 2, is an NAD-dependent histone and protein deacetylase. It has a wide range of biological functions, ranging from DNA damage repair to effects on glucose metabolism. Sirt1 null mice die before birth due to chromosomal...
Published: 10/28/2024
|
Inventor(s):
Chuxia Deng
Keywords(s):
1
,
IDXXXX
,
IXXXXX
,
LOXP
,
Mouse
,
Sirt
,
SIRT1
,
Tm1Cxd
Category(s):
Collaboration Sought > Licensing
,
Application > Diagnostics
,
Application > Research Materials
,
Application > Therapeutics
Sirt1
Knockout (Sirt1tm1.1Cxd) Mouse Model for Oncology and Metabolism Studies
Sirt1
knockout: Sirt1, a protein deacetylase, is a tumor suppressor that promotes genome stability and regulates proteins involved in energy metabolism. Yeast Sir2, a nicotinamide adenine dinucleotide (NAD)-dependent protein deacetylase, has been implicated in chromatin silencing, longevity and genome stability. Mammals contain a family of related...
Published: 10/28/2024
|
Inventor(s):
Chuxia Deng
Keywords(s):
CCXXXX
,
cre-lox
,
Cre-loxP
,
CXXXXX
,
GCXXXX
,
GXXXXX
,
IDXXXX
,
IXXXXX
,
knockout mice
,
Mouse
,
Mouse animal model
,
SIRT1
,
Tm1.1Cxd
Category(s):
Collaboration Sought > Licensing
,
Application > Therapeutics
,
TherapeuticArea > Oncology
,
Application > Diagnostics
,
Application > Research Materials
SIRT1
KO Human Cell Lines Generated by CRISPR/Cas9-mediated DNA Editing
SIRT1
, a NAD+-dependent protein deacetylase, is the most conserved member of the sirtuins family. Through deacetylation of a number of protein substrates that are important transcription factors or co-factors, SIRT1 regulates many vital biological processes such as metabolism, cellular stress response, stem cell pluripotency, and development. The present...
Published: 10/28/2024
|
Inventor(s):
Yi Fang
,
Xiaoling Li
Keywords(s):
Cell
,
CRISPER/Cas9-mediated
,
DNA
,
Editing
,
GENERATED
,
Human
,
KO
,
Lines
,
SIRT1
,
VCXXXX
,
VFXXXX
,
VPXXXX
,
WIXXXX
,
XEXXXX
,
YAXXXX
Category(s):
Collaboration Sought > Licensing
,
TherapeuticArea > Ophthalmology
,
TherapeuticArea > Cardiology
,
TherapeuticArea > Endocrinology
,
TherapeuticArea > Dental
,
Application > Therapeutics
,
TherapeuticArea > Oncology
,
TherapeuticArea > Infectious Disease
,
Application > Research Materials