PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.

Diabetes is a metabolic disorder characterized by hyperglycemia. Insulin, which is secreted by pancreatic beta cells, is recognized as the critical regulator of blood glucose, but the molecular machinery responsible for insulin trafficking remains poorly defined. In particular, the roles of cytosoli...

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Main Authors: Mian Cao, Zhuo Mao, Chuen Kam, Nan Xiao, Xiaoxing Cao, Chong Shen, Kenneth K Y Cheng, Aimin Xu, Kwong-Man Lee, Liwen Jiang, Jun Xia
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS Biology
Online Access:http://europepmc.org/articles/PMC3635858?pdf=render
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spelling doaj-de5d6b16d51e44cea7dea0aaaf73e9022021-07-02T11:26:58ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852013-01-01114e100154110.1371/journal.pbio.1001541PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.Mian CaoZhuo MaoChuen KamNan XiaoXiaoxing CaoChong ShenKenneth K Y ChengAimin XuKwong-Man LeeLiwen JiangJun XiaDiabetes is a metabolic disorder characterized by hyperglycemia. Insulin, which is secreted by pancreatic beta cells, is recognized as the critical regulator of blood glucose, but the molecular machinery responsible for insulin trafficking remains poorly defined. In particular, the roles of cytosolic factors that govern the formation and maturation of insulin granules are unclear. Here we report that PICK1 and ICA69, two cytosolic lipid-binding proteins, formed heteromeric BAR-domain complexes that associated with insulin granules at different stages of their maturation. PICK1-ICA69 heteromeric complexes associated with immature secretory granules near the trans-Golgi network (TGN). A brief treatment of Brefeldin A, which blocks vesicle budding from the Golgi, increased the amount of PICK1 and ICA69 at TGN. On the other hand, mature secretory granules were associated with PICK1 only, not ICA69. PICK1 deficiency in mice caused the complete loss of ICA69 and led to increased food and water intake but lower body weight. Glucose tolerance tests demonstrated that these mutant mice had high blood glucose, a consequence of insufficient insulin. Importantly, while the total insulin level was reduced in PICK1-deficient beta cells, proinsulin was increased. Lastly, ICA69 knockout mice also displayed similar phenotype as the mice deficient in PICK1. Together, our results indicate that PICK1 and ICA69 are key regulators of the formation and maturation of insulin granules.http://europepmc.org/articles/PMC3635858?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mian Cao
Zhuo Mao
Chuen Kam
Nan Xiao
Xiaoxing Cao
Chong Shen
Kenneth K Y Cheng
Aimin Xu
Kwong-Man Lee
Liwen Jiang
Jun Xia
spellingShingle Mian Cao
Zhuo Mao
Chuen Kam
Nan Xiao
Xiaoxing Cao
Chong Shen
Kenneth K Y Cheng
Aimin Xu
Kwong-Man Lee
Liwen Jiang
Jun Xia
PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
PLoS Biology
author_facet Mian Cao
Zhuo Mao
Chuen Kam
Nan Xiao
Xiaoxing Cao
Chong Shen
Kenneth K Y Cheng
Aimin Xu
Kwong-Man Lee
Liwen Jiang
Jun Xia
author_sort Mian Cao
title PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
title_short PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
title_full PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
title_fullStr PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
title_full_unstemmed PICK1 and ICA69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
title_sort pick1 and ica69 control insulin granule trafficking and their deficiencies lead to impaired glucose tolerance.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2013-01-01
description Diabetes is a metabolic disorder characterized by hyperglycemia. Insulin, which is secreted by pancreatic beta cells, is recognized as the critical regulator of blood glucose, but the molecular machinery responsible for insulin trafficking remains poorly defined. In particular, the roles of cytosolic factors that govern the formation and maturation of insulin granules are unclear. Here we report that PICK1 and ICA69, two cytosolic lipid-binding proteins, formed heteromeric BAR-domain complexes that associated with insulin granules at different stages of their maturation. PICK1-ICA69 heteromeric complexes associated with immature secretory granules near the trans-Golgi network (TGN). A brief treatment of Brefeldin A, which blocks vesicle budding from the Golgi, increased the amount of PICK1 and ICA69 at TGN. On the other hand, mature secretory granules were associated with PICK1 only, not ICA69. PICK1 deficiency in mice caused the complete loss of ICA69 and led to increased food and water intake but lower body weight. Glucose tolerance tests demonstrated that these mutant mice had high blood glucose, a consequence of insufficient insulin. Importantly, while the total insulin level was reduced in PICK1-deficient beta cells, proinsulin was increased. Lastly, ICA69 knockout mice also displayed similar phenotype as the mice deficient in PICK1. Together, our results indicate that PICK1 and ICA69 are key regulators of the formation and maturation of insulin granules.
url http://europepmc.org/articles/PMC3635858?pdf=render
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