Go to JCI Insight
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Publication ethics
  • Publication alerts by email
  • Advertising
  • Job board
  • Contact
  • Clinical Research and Public Health
  • Current issue
  • Past issues
  • By specialty
    • COVID-19
    • Cardiology
    • Gastroenterology
    • Immunology
    • Metabolism
    • Nephrology
    • Neuroscience
    • Oncology
    • Pulmonology
    • Vascular biology
    • All ...
  • Videos
    • Conversations with Giants in Medicine
    • Video Abstracts
  • Reviews
    • View all reviews ...
    • Complement Biology and Therapeutics (May 2025)
    • Evolving insights into MASLD and MASH pathogenesis and treatment (Apr 2025)
    • Microbiome in Health and Disease (Feb 2025)
    • Substance Use Disorders (Oct 2024)
    • Clonal Hematopoiesis (Oct 2024)
    • Sex Differences in Medicine (Sep 2024)
    • Vascular Malformations (Apr 2024)
    • View all review series ...
  • Viewpoint
  • Collections
    • In-Press Preview
    • Clinical Research and Public Health
    • Research Letters
    • Letters to the Editor
    • Editorials
    • Commentaries
    • Editor's notes
    • Reviews
    • Viewpoints
    • 100th anniversary
    • Top read articles

  • Current issue
  • Past issues
  • Specialties
  • Reviews
  • Review series
  • Conversations with Giants in Medicine
  • Video Abstracts
  • In-Press Preview
  • Clinical Research and Public Health
  • Research Letters
  • Letters to the Editor
  • Editorials
  • Commentaries
  • Editor's notes
  • Reviews
  • Viewpoints
  • 100th anniversary
  • Top read articles
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Publication ethics
  • Publication alerts by email
  • Advertising
  • Job board
  • Contact

Citations to this article

Gelsolin, a Ca2+-dependent actin-binding protein in a hamster insulin-secreting cell line.
T Y Nelson, A E Boyd 3rd
T Y Nelson, A E Boyd 3rd
Published March 1, 1985
Citation Information: J Clin Invest. 1985;75(3):1015-1022. https://doi.org/10.1172/JCI111762.
View: Text | PDF
Research Article

Gelsolin, a Ca2+-dependent actin-binding protein in a hamster insulin-secreting cell line.

  • Text
  • PDF
Abstract

Using a gel overlay technique we have previously described a 90,000-mol wt actin-binding protein in a number of hormone-secreting tissues and tentatively identified this protein as gelsolin. Gelsolin is a protein that cuts or solates cross-linked actin filaments and can also serve as a nucleating site for actin polymerization. The objective of this study was to isolate this protein from a hamster insulin-secreting (HIT) cell line and compare the immunologic properties and peptide maps of purified rabbit macrophage gelsolin, human platelet gelsolin, and the HIT cell 90,000-mol wt protein. DNase I-Sepharose retained the HIT cell actin-binding proteins in 1 mM CaCl2; some of the 90,000-mol wt protein could then be eluted with 1 mM EGTA. The remaining actin-binding proteins were eluted using a buffer containing SDS. The EGTA peak fractions contained two major protein bands of Mr = 90,000 and 42,000, which suggested that a 90,000-mol wt-actin complex was eluted from the DNase I-Sepharose column. Specific antibodies to the human platelet and rabbit macrophage gelsolins bound to the 90,000-mol wt bands in the eluates, but did not crossreact with other actin-binding proteins. Indirect immunofluorescence using an anti-human platelet gelsolin antibody localized the 90,000-mol wt protein to stress fibers that were also stained with phalloidin, which suggested that gelsolin is associated with actin in vivo. Tryptic peptide maps of all three radioiodinated gelsolins were virtually indistinguishable. Thus, gelsolin is a highly conserved gene product found in at least three diverse cell types, an insulin-secreting beta cell line, macrophages, and platelets, and may link a transient increase in Ca2+ cellular levels with changes in actin polymerization and/or the gel-sol state of these cells.

Authors

T Y Nelson, A E Boyd 3rd

×

Total citations by year

Year: 2022 2021 2020 2017 2016 2014 2012 2011 2006 2003 2001 1995 1994 1991 1986 Total
Citations: 2 2 2 1 1 1 1 108 2 2 1 1 1 1 2 128
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (128)

Title and authors Publication Year
State of Knowledge on Molecular Adaptations to Exercise in Humans: Historical Perspectives and Future Directions
Lavin KM, Coen PM, Baptista LC, Bell MB, Drummer D, Harper SA, Lixandrão ME, McAdam JS, O\u2019Bryan SM, Ramos S, Roberts LM, Vega RB, Goodpaster BH, Bamman MM, Buford TW
Comprehensive Physiology 2022
Physiological Systems in Promoting Frailty
Perazza LR, Brown-Borg HM, Thompson LV
Comprehensive Physiology 2022
Proteomic Profiling Reveals Novel Biomarkers and Pathways in Type 2 Diabetes Risk
Debby Ngo, Mark D Benson, Jonathan Z. Long, Zsu-Zsu Chen, Ruiqi Wang, Anjali K Nath, Michelle J Keyes, Dongxiao Shen, Sumita Sinha, Eric Kuhn, Jordan Morningstar, Xu Shi, Bennet D. Peterson, Christopher Chan, Daniel H Katz, Usman A. Tahir, Laurie Farrell, Olle Melander, Jonathan D. Mosley, Steven A. Carr, Ramachandran Vasan, Martin G Larson, J. Gustav Smith, Thomas Wang, Qiong Yang, Robert Gerszten
JCI Insight 2021
Multi-omic Approaches to Identify Genetic Factors in Metabolic Syndrome
Clark KC, Kwitek AE
Comprehensive Physiology 2021
Glucagon-like Peptide-1: Actions and Influence on Pancreatic Hormone Function
Davis EM, Sandoval DA
Comprehensive Physiology 2020
GPCRs, G Proteins, and Their Impact on β-cell Function
Kowluru A
Comprehensive Physiology 2020
Promoting Glucose Transporter-4 Vesicle Trafficking along Cytoskeletal Tracks: PAK-Ing Them Out
R Tunduguru, DC Thurmond
Frontiers in Endocrinology 2017
Gelsolin expression in liver, spleen and blood plasma provides insights into its function in mice following acute insults
H Fu, H Du, Z Hu, X Ying, R Zhou
EUR J INFLAMM 2016
Plasma Gelsolin Levels Decrease in Diabetic State and Increase upon Treatment with F-Actin Depolymerizing Versions of Gelsolin
N Khatri, A Sagar, N Peddada, V Choudhary, BS Chopra, V Garg, R Garg, Ashish
Journal of Diabetes Research 2014
Gelsolin Associates with the N Terminus of Syntaxin 4 to Regulate Insulin Granule Exocytosis
MA Kalwat, DA Wiseman, W Luo, Z Wang, DC Thurmond
Molecular Endocrinology 2012
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2011
Pro-Survival Role of Gelsolin in Mouse  -Cells
B Yermen, A Tomas, PA Halban
Diabetes 2006
Regulation of pancreatic β-cell insulin secretion by actin cytoskeleton remodelling: role of gelsolin and cooperation with the MAPK signalling pathway
A Tomas, B Yermen, L Min, JE Pessin, PA Halban
Journal of cell science 2006
Roles of 5'-AMP-activated protein kinase (AMPK) in mammalian glucose homoeostasis
GA Rutter, GD Xavier, I Leclerc
Biochemical Journal 2003
5′-AMP-activated Protein Kinase Controls Insulin-containing Secretory Vesicle Dynamics
T Tsuboi, GS Xavier, I Leclerc, GA Rutter
The Journal of biological chemistry 2003
State-dependent modification of ATP-sensitive K + channels by phosphatidylinositol 4,5-bisphosphate
M Okamura, M Kakei, K Ichinari, A Miyamura, N Oketani, N Koriyama, C Tei
American journal of physiology. Cell physiology 2001
Activation of alpha-2-adrenoceptors results in an increase in F-actin formation in HIT-T15 pancreatic B-cells
HC Cable, A el-Mansoury, NG Morgan
Biochemical Journal 1995
Effect of disruption of actin filaments by Clostridium botulinum C2 toxin on insulin secretion in HIT-T15 cells and pancreatic islets
G Li, E Rungger-Brändle, I Just, JC Jonas, K Aktories, CB Wollheim
Molecular biology of the cell 1994
International Review of Cytology
RA Miller
International Review of Cytology 1991
Rate constant for capping of the barbed ends of actin filaments by the gelsolin-actin complex
N SELVE, A WEGNER
European Journal of Biochemistry 1986
Rate constants and equilibrium constants for binding of the gelsolin-actin complex to the barbed ends of actin filaments in the presence and absence of calcium
N SELVE, A WEGNER
European Journal of Biochemistry 1986

← Previous 1 2 3 4 5 6 Next →

Advertisement

Copyright © 2025 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

Sign up for email alerts