Cargando…

Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging

The N(1)-acetylation of spermidine or spermine by spermidine/spermine N(1)-acetyltransferase (SSAT) is the ratecontrolling enzymatic step in the polyamine catabolism. We have now generated SSAT knockout (SSAT-KO) mice, which confirmed our earlier results with SSAT deficient embryonic stem (ES) cells...

Descripción completa

Detalles Bibliográficos
Autores principales: Niiranen, Kirsi, Keinänen, Tuomo A, Pirinen, Eija, Heikkinen, Sami, Tusa, Maija, Fatrai, Szabolcs, Suppola, Suvikki, Pietilä, Marko, Uimari, Anne, Laakso, Markku, Alhonen, Leena, Jänne, Juhani
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933077/
http://dx.doi.org/10.2755/jcmm010.004.02
_version_ 1782304870490963968
author Niiranen, Kirsi
Keinänen, Tuomo A
Pirinen, Eija
Heikkinen, Sami
Tusa, Maija
Fatrai, Szabolcs
Suppola, Suvikki
Pietilä, Marko
Uimari, Anne
Laakso, Markku
Alhonen, Leena
Jänne, Juhani
author_facet Niiranen, Kirsi
Keinänen, Tuomo A
Pirinen, Eija
Heikkinen, Sami
Tusa, Maija
Fatrai, Szabolcs
Suppola, Suvikki
Pietilä, Marko
Uimari, Anne
Laakso, Markku
Alhonen, Leena
Jänne, Juhani
author_sort Niiranen, Kirsi
collection PubMed
description The N(1)-acetylation of spermidine or spermine by spermidine/spermine N(1)-acetyltransferase (SSAT) is the ratecontrolling enzymatic step in the polyamine catabolism. We have now generated SSAT knockout (SSAT-KO) mice, which confirmed our earlier results with SSAT deficient embryonic stem (ES) cells showing only slightly affected polyamine homeostasis, mainly manifested as an elevated molar ratio of spermidine to spermine in most tissues indicating the indispensability of SSAT for the spermidine backconversion. Contrary to SSAT deficient ES cells, polyamine pools in SSAT-KO mice remained almost unchanged in response to N(1), N(11)-diethylnorspermine (DENSPM) treatment compared to a significant reduction of the polymine pools in the wild-type animals and ES cells. Furthermore, SSATKO mice were more sensitive to the toxicity exerted by DENSPM in comparison with wild-type mice. The latter finding indicates that inducible SSAT plays an essential role in vivo in DENSPM treatmentevoked polyamine depletion, but a controversial role in toxicity of DENSPM. Surprisingly, liver polyamine pools were depleted similarly in wild type and SSAT-KO mice in response to carbon tetrachloride treatment. Further characterization of SSAT knockout mice revealed insulin resistance at old age which supported the role of polyamine catabolism in glucose metabolism detected earlier with our SSAT overexpressing mice displaying enhanced basal metabolic rate, high insulin sensitivity and improved glucose tolerance. Therefore SSAT knockout mice might serve as a novel mouse model for type 2 diabetes.
format Online
Article
Text
id pubmed-3933077
institution National Center for Biotechnology Information
language English
publishDate 2006
publisher John Wiley & Sons, Ltd
record_format MEDLINE/PubMed
spelling pubmed-39330772015-07-06 Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging Niiranen, Kirsi Keinänen, Tuomo A Pirinen, Eija Heikkinen, Sami Tusa, Maija Fatrai, Szabolcs Suppola, Suvikki Pietilä, Marko Uimari, Anne Laakso, Markku Alhonen, Leena Jänne, Juhani J Cell Mol Med Epigenetic Review Series The N(1)-acetylation of spermidine or spermine by spermidine/spermine N(1)-acetyltransferase (SSAT) is the ratecontrolling enzymatic step in the polyamine catabolism. We have now generated SSAT knockout (SSAT-KO) mice, which confirmed our earlier results with SSAT deficient embryonic stem (ES) cells showing only slightly affected polyamine homeostasis, mainly manifested as an elevated molar ratio of spermidine to spermine in most tissues indicating the indispensability of SSAT for the spermidine backconversion. Contrary to SSAT deficient ES cells, polyamine pools in SSAT-KO mice remained almost unchanged in response to N(1), N(11)-diethylnorspermine (DENSPM) treatment compared to a significant reduction of the polymine pools in the wild-type animals and ES cells. Furthermore, SSATKO mice were more sensitive to the toxicity exerted by DENSPM in comparison with wild-type mice. The latter finding indicates that inducible SSAT plays an essential role in vivo in DENSPM treatmentevoked polyamine depletion, but a controversial role in toxicity of DENSPM. Surprisingly, liver polyamine pools were depleted similarly in wild type and SSAT-KO mice in response to carbon tetrachloride treatment. Further characterization of SSAT knockout mice revealed insulin resistance at old age which supported the role of polyamine catabolism in glucose metabolism detected earlier with our SSAT overexpressing mice displaying enhanced basal metabolic rate, high insulin sensitivity and improved glucose tolerance. Therefore SSAT knockout mice might serve as a novel mouse model for type 2 diabetes. John Wiley & Sons, Ltd 2006-10 2008-06-28 /pmc/articles/PMC3933077/ http://dx.doi.org/10.2755/jcmm010.004.02 Text en
spellingShingle Epigenetic Review Series
Niiranen, Kirsi
Keinänen, Tuomo A
Pirinen, Eija
Heikkinen, Sami
Tusa, Maija
Fatrai, Szabolcs
Suppola, Suvikki
Pietilä, Marko
Uimari, Anne
Laakso, Markku
Alhonen, Leena
Jänne, Juhani
Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
title Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
title_full Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
title_fullStr Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
title_full_unstemmed Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
title_short Mice with targeted disruption of spermidine/spermine N(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
title_sort mice with targeted disruption of spermidine/spermine n(1)-acetyltransferase gene maintain nearly normal tissue polyamine homeostasis but show signs of insulin resistance upon aging
topic Epigenetic Review Series
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933077/
http://dx.doi.org/10.2755/jcmm010.004.02
work_keys_str_mv AT niiranenkirsi micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT keinanentuomoa micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT pirineneija micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT heikkinensami micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT tusamaija micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT fatraiszabolcs micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT suppolasuvikki micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT pietilamarko micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT uimarianne micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT laaksomarkku micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT alhonenleena micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging
AT jannejuhani micewithtargeteddisruptionofspermidinesperminen1acetyltransferasegenemaintainnearlynormaltissuepolyaminehomeostasisbutshowsignsofinsulinresistanceuponaging