Cargando…

Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice

The quest for rejuvenation and prolonged lifespan through transfusion of young blood has been studied for decades with the hope of unlocking the mystery of the key substance(s) that exists in the circulating blood of juvenile organisms. However, a pivotal mediator has yet been identified. Here, atyp...

Descripción completa

Detalles Bibliográficos
Autores principales: Shyu, Yu‐Chiau, Liao, Po‐Cheng, Huang, Ting‐Shou, Yang, Chun‐Ju, Lu, Mu‐Jie, Huang, Shih‐Ming, Lin, Xin‐Yu, Liou, Cai‐Cin, Kao, Yu‐Hsiang, Lu, Chi‐Huan, Peng, Hui‐Ling, Chen, Jim‐Ray, Cherng, Wen‐Jin, Yang, Ning‐I, Chen, Yung‐Chang, Pan, Heng‐Chih, Jiang, Si‐Tse, Hsu, Chih‐Chin, Lin, Gigin, Yuan, Shin‐Sheng, Hsu, Paul Wei‐Che, Wu, Kou‐Juey, Lee, Tung‐Liang, Shen, Che‐Kun James
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9443461/
https://www.ncbi.nlm.nih.gov/pubmed/35822667
http://dx.doi.org/10.1002/advs.202201409
_version_ 1784782987414470656
author Shyu, Yu‐Chiau
Liao, Po‐Cheng
Huang, Ting‐Shou
Yang, Chun‐Ju
Lu, Mu‐Jie
Huang, Shih‐Ming
Lin, Xin‐Yu
Liou, Cai‐Cin
Kao, Yu‐Hsiang
Lu, Chi‐Huan
Peng, Hui‐Ling
Chen, Jim‐Ray
Cherng, Wen‐Jin
Yang, Ning‐I
Chen, Yung‐Chang
Pan, Heng‐Chih
Jiang, Si‐Tse
Hsu, Chih‐Chin
Lin, Gigin
Yuan, Shin‐Sheng
Hsu, Paul Wei‐Che
Wu, Kou‐Juey
Lee, Tung‐Liang
Shen, Che‐Kun James
author_facet Shyu, Yu‐Chiau
Liao, Po‐Cheng
Huang, Ting‐Shou
Yang, Chun‐Ju
Lu, Mu‐Jie
Huang, Shih‐Ming
Lin, Xin‐Yu
Liou, Cai‐Cin
Kao, Yu‐Hsiang
Lu, Chi‐Huan
Peng, Hui‐Ling
Chen, Jim‐Ray
Cherng, Wen‐Jin
Yang, Ning‐I
Chen, Yung‐Chang
Pan, Heng‐Chih
Jiang, Si‐Tse
Hsu, Chih‐Chin
Lin, Gigin
Yuan, Shin‐Sheng
Hsu, Paul Wei‐Che
Wu, Kou‐Juey
Lee, Tung‐Liang
Shen, Che‐Kun James
author_sort Shyu, Yu‐Chiau
collection PubMed
description The quest for rejuvenation and prolonged lifespan through transfusion of young blood has been studied for decades with the hope of unlocking the mystery of the key substance(s) that exists in the circulating blood of juvenile organisms. However, a pivotal mediator has yet been identified. Here, atypical findings are presented that are observed in a knockin mouse model carrying a lysine to arginine substitution at residue 74 of Krüppel‐like factor 1 (KLF1/EKLF), the SUMOylation‐deficient Klf1 (K74R/K74R) mouse, that displayed significant improvement in geriatric disorders and lifespan extension. Klf1 (K74R/K74R) mice exhibit a marked delay in age‐related physical performance decline and disease progression as evidenced by physiological and pathological examinations. Furthermore, the KLF1(K74R) knockin affects a subset of lymphoid lineage cells; the abundance of tumor infiltrating effector CD8(+) T cells and NKT cells is increased resulting in antitumor immune enhancement in response to tumor cell administration. Significantly, infusion of hematopoietic stem cells (HSCs) from Klf1 (K74R/K74R) mice extends the lifespan of the wild‐type mice. The Klf1 (K74R/K74R) mice appear to be an ideal animal model system for further understanding of the molecular/cellular basis of aging and development of new strategies for antiaging and prevention/treatment of age‐related diseases thus extending the healthspan as well as lifespan.
format Online
Article
Text
id pubmed-9443461
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-94434612022-09-09 Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice Shyu, Yu‐Chiau Liao, Po‐Cheng Huang, Ting‐Shou Yang, Chun‐Ju Lu, Mu‐Jie Huang, Shih‐Ming Lin, Xin‐Yu Liou, Cai‐Cin Kao, Yu‐Hsiang Lu, Chi‐Huan Peng, Hui‐Ling Chen, Jim‐Ray Cherng, Wen‐Jin Yang, Ning‐I Chen, Yung‐Chang Pan, Heng‐Chih Jiang, Si‐Tse Hsu, Chih‐Chin Lin, Gigin Yuan, Shin‐Sheng Hsu, Paul Wei‐Che Wu, Kou‐Juey Lee, Tung‐Liang Shen, Che‐Kun James Adv Sci (Weinh) Research Articles The quest for rejuvenation and prolonged lifespan through transfusion of young blood has been studied for decades with the hope of unlocking the mystery of the key substance(s) that exists in the circulating blood of juvenile organisms. However, a pivotal mediator has yet been identified. Here, atypical findings are presented that are observed in a knockin mouse model carrying a lysine to arginine substitution at residue 74 of Krüppel‐like factor 1 (KLF1/EKLF), the SUMOylation‐deficient Klf1 (K74R/K74R) mouse, that displayed significant improvement in geriatric disorders and lifespan extension. Klf1 (K74R/K74R) mice exhibit a marked delay in age‐related physical performance decline and disease progression as evidenced by physiological and pathological examinations. Furthermore, the KLF1(K74R) knockin affects a subset of lymphoid lineage cells; the abundance of tumor infiltrating effector CD8(+) T cells and NKT cells is increased resulting in antitumor immune enhancement in response to tumor cell administration. Significantly, infusion of hematopoietic stem cells (HSCs) from Klf1 (K74R/K74R) mice extends the lifespan of the wild‐type mice. The Klf1 (K74R/K74R) mice appear to be an ideal animal model system for further understanding of the molecular/cellular basis of aging and development of new strategies for antiaging and prevention/treatment of age‐related diseases thus extending the healthspan as well as lifespan. John Wiley and Sons Inc. 2022-07-13 /pmc/articles/PMC9443461/ /pubmed/35822667 http://dx.doi.org/10.1002/advs.202201409 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Shyu, Yu‐Chiau
Liao, Po‐Cheng
Huang, Ting‐Shou
Yang, Chun‐Ju
Lu, Mu‐Jie
Huang, Shih‐Ming
Lin, Xin‐Yu
Liou, Cai‐Cin
Kao, Yu‐Hsiang
Lu, Chi‐Huan
Peng, Hui‐Ling
Chen, Jim‐Ray
Cherng, Wen‐Jin
Yang, Ning‐I
Chen, Yung‐Chang
Pan, Heng‐Chih
Jiang, Si‐Tse
Hsu, Chih‐Chin
Lin, Gigin
Yuan, Shin‐Sheng
Hsu, Paul Wei‐Che
Wu, Kou‐Juey
Lee, Tung‐Liang
Shen, Che‐Kun James
Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice
title Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice
title_full Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice
title_fullStr Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice
title_full_unstemmed Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice
title_short Genetic Disruption of KLF1 K74 SUMOylation in Hematopoietic System Promotes Healthy Longevity in Mice
title_sort genetic disruption of klf1 k74 sumoylation in hematopoietic system promotes healthy longevity in mice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9443461/
https://www.ncbi.nlm.nih.gov/pubmed/35822667
http://dx.doi.org/10.1002/advs.202201409
work_keys_str_mv AT shyuyuchiau geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT liaopocheng geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT huangtingshou geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT yangchunju geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT lumujie geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT huangshihming geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT linxinyu geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT lioucaicin geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT kaoyuhsiang geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT luchihuan geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT penghuiling geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT chenjimray geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT cherngwenjin geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT yangningi geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT chenyungchang geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT panhengchih geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT jiangsitse geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT hsuchihchin geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT lingigin geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT yuanshinsheng geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT hsupaulweiche geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT wukoujuey geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT leetungliang geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice
AT shenchekunjames geneticdisruptionofklf1k74sumoylationinhematopoieticsystempromoteshealthylongevityinmice