Sorting ourselves out: Seeking consensus on trafficking in the beta-cell

被引:66
作者
Arvan, P
Halban, PA [1 ]
机构
[1] Univ Med Ctr, Res Labs, CH-1211 Geneva 4, Switzerland
[2] Univ Michigan, Med Ctr, Div Endocrinol Diabet & Metab, Ann Arbor, MI 48109 USA
关键词
C-peptide; insulin; large dense-core vesicles; prohormone conversion; proinsulin; secretory pathways; vesicular trafficking;
D O I
10.1111/j.1600-0854.2004.00152.x
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Biogenesis of the regulated secretory pathway in the pancreatic beta-cell involves packaging of products, notably proinsulin, into immature secretory granules derived from the trans-Golgi network. Proinsulin is converted to insulin and C-peptide as granules mature. Secretory proteins not entering granules are conveyed by transport intermediates directly to the plasma membrane for constitutive secretion. One of the co-authors, Peter Arvan, has proposed that in addition, small vesicles bud from granules to traffic to the endosomal system. From there, some proteins are secreted by a (post-granular) constitutive-like pathway. He argues that retention in granules is facilitated by condensation, rendering soluble products (notably C-peptide and proinsulin) more available for constitutive-like secretion. Thus he argues that prohormone conversion is potentially important in secretory granule biogenesis. The other co-author, Philippe Halban, argues that the post-granular secretory pathway is not of physiological relevance in primary beta-cells, and contests the importance of proinsulin conversion for retention in granules. Both, however, agree that trafficking from granules to endosomes is important, purging granules of unwanted newly synthesized proteins and allowing their traffic to other destinations. In this Traffic Interchange, the two co-authors attempt to reconcile their differences, leading to a common vision of proinsulin trafficking in primary and transformed cells.
引用
收藏
页码:53 / 61
页数:9
相关论文
共 65 条
[1]  
ARVAN P, 1991, J BIOL CHEM, V266, P14171
[2]   Sorting and storage during secretory granule biogenesis: looking backward and looking forward [J].
Arvan, P ;
Castle, D .
BIOCHEMICAL JOURNAL, 1998, 332 :593-610
[3]   Lumenal protein multimerization in the distal secretory pathway/secretory granules [J].
Arvan, P ;
Zhang, BY ;
Feng, LJ ;
Liu, M ;
Kuliawat, R .
CURRENT OPINION IN CELL BIOLOGY, 2002, 14 (04) :448-453
[4]  
Arvan Peter, 1992, Trends in Cell Biology, V2, P327
[5]   QUANTITATIVE IMMUNOCYTOCHEMICAL LOCALIZATION OF PANCREATIC SECRETORY PROTEINS IN SUBCELLULAR COMPARTMENTS OF THE RAT ACINAR CELL [J].
BENDAYAN, M ;
ROTH, J ;
PERRELET, A ;
ORCI, L .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1980, 28 (02) :149-160
[6]   Involvement of the membrane lipid bilayer in sorting prohormone convertase 2 into the regulated secretory pathway [J].
Blázquez, M ;
Thiele, C ;
Huttner, WB ;
Docherty, K ;
Shennan, KIJ .
BIOCHEMICAL JOURNAL, 2000, 349 :843-852
[7]   A protease processing site is essential for prorenin sorting to the regulated secretory pathway [J].
Brechler, V ;
Chu, WN ;
Baxter, JD ;
Thibault, G ;
Reudelhuber, TL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (34) :20636-20640
[8]  
BUSCHARD K, 1994, DIABETOLOGIA, V37, P1000
[9]   A MUTANT HUMAN PROINSULIN IS SECRETED FROM ISLETS OF LANGERHANS IN INCREASED AMOUNTS VIA AN UNREGULATED PATHWAY [J].
CARROLL, RJ ;
HAMMER, RE ;
CHAN, SJ ;
SWIFT, HH ;
RUBENSTEIN, AH ;
STEINER, DF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (23) :8943-8947
[10]  
Castle AM, 2002, J CELL SCI, V115, P2963