Actin-microtubule interactions in the alga Nitella: Analysis of the mechanism by which microtubule depolymerization potentiates cytochalasin's effects on streaming

被引:31
作者
Collings, DA
Wasteneys, GO
Williamson, RE
机构
关键词
actin; cytoplasmic streaming; cytochalasin; microtubule depolymerization; Nitella; oryzalin;
D O I
10.1007/BF01281816
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In the characean alga Nitella, depolymerization of microtubules potentiates the inhibitory effects of cytochalasins on cytoplasmic streaming. Microtubule depolymerization lowers the cytochalasin B and D concentrations required to inhibit streaming, accelerates inhibition and delays streaming recovery. Because microtubule depolymerization does nor significantly alter H-3-cytochalasin B uptake and release, elevated intracellular cytochalasin concentrations are not the basis for potentiation. Instead, microtubule depolymerization causes actin to become more sensitive to cytochalasin. This increased sensitivity of actin is unlikely to be due to direct stabilization of actin by microtubules, however, because very few microtubules colocalize with the subcortical actin bundles that generate streaming. Furthermore, microtubule reassembly, but nor recovery of former transverse alignment, is sufficient for restoring the normal cellular responses to cytochalasin D. We hypothesize that either tubulin or microtubule-associated proteins, released when microtubules depolymerize, interact with the actin cytoskeleton and sensitize it to cytochalasin.
引用
收藏
页码:178 / 190
页数:13
相关论文
共 43 条
[11]   FLAGELLAR MICROTUBULE DYNAMICS IN CHLAMYDOMONAS - CYTOCHALASIN-D INDUCES PERIODS OF MICROTUBULE SHORTENING AND ELONGATION - AND COLCHICINE INDUCES DISASSEMBLY OF THE DISTAL, BUT NOT PROXIMAL, HALF OF THE FLAGELLUM [J].
DENTLER, WL ;
ADAMS, C .
JOURNAL OF CELL BIOLOGY, 1992, 117 (06) :1289-1298
[12]  
ELEFTHERIOU EP, 1992, J CELL SCI, V103, P989
[13]   HERBICIDES AND FUNGICIDES INHIBIT CA-2+ UPTAKE BY PLANT-MITOCHONDRIA - A POSSIBLE MECHANISM OF ACTION [J].
HERTEL, C ;
MARME, D .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 1983, 19 (03) :282-290
[14]  
Hope AB, 1971, ION TRANSPORT MEMBRA
[15]   BUNDLING OF MICROTUBULES INVITRO BY FODRIN [J].
ISHIKAWA, M ;
MUROFUSHI, H ;
SAKAI, H .
JOURNAL OF BIOCHEMISTRY, 1983, 94 (04) :1209-1217
[16]   THE BINDING OF NONMUSCLE CALDESMON FROM BRAIN TO MICROTUBULES - REGULATIONS BY CA2+-CALMODULIN AND CDC2 KINASE [J].
ISHIKAWA, R ;
KAGAMI, O ;
HAYASHI, C ;
KOHAMA, K .
FEBS LETTERS, 1992, 299 (01) :54-56
[17]   CHARACTERIZATION OF SMOOTH-MUSCLE CALDESMON AS A MICROTUBULE-ASSOCIATED PROTEIN [J].
ISHIKAWA, R ;
KAGAMI, O ;
HAYASHI, C ;
KOHAMA, K .
CELL MOTILITY AND THE CYTOSKELETON, 1992, 23 (04) :244-251
[18]  
KADOTA A, 1992, PLANT CELL PHYSIOL, V33, P99
[19]   DISRUPTION OF MICROTUBULES INDUCES FORMATION OF ACTIN FIBRILS IN DENSITY-INHIBITED 3T3 CELLS [J].
KAJSTURA, J ;
BEREITERHAHN, J .
CELL BIOLOGY INTERNATIONAL, 1993, 17 (11) :1023-1031
[20]  
KEIFER AQ, 1992, PLANTA, V186, P361, DOI 10.1007/BF00195316