Transitional endoplasmic reticulum (tER) consists of confluent rough and sm
ooth endoplasmic reticulum (ER) domains. In a cell-free incubation system,
low-density microsomes (1.17 g cc(-1)) isolated from rat liver homogenates
reconstitute tER by Mg2+ GTP- and Mg2+ ATP-hydrolysis-dependent membrane fu
sion. The ATPases associated with different cellular activities protein p97
has been identified as the relevant ATPase. The ATP depletion by hexokinas
e or treatment with either N-ethylmaleimide or anti-p97 prevented assembly
of the smooth ER domain of tER. High-salt washing of low-density microsomes
inhibited assembly of the smooth ER domain of tER, whereas the readdition
of purified p97 with associated p47 promoted reconstitution. The t-SNARE sy
ntaxin 5 was observed within the smooth ER domain of tER, and antisyntaxin
5 abrogated formation of this same membrane compartment. Thus, p97 and synt
axin 5 regulate assembly of the smooth ER domain of tER and hence one of th
e earliest membrane differentiated components of the secretory pathway.