Author:
Barua Madhabi,Ghosh Anil K.,Majumder Gopal C.
Abstract
A phosphoprotein phosphatase (PPase M-I) that
dephosphorylates serine and threonine residues of histones was isolated from
the goat cauda-epididymal sperm plasma membrane and partially characterized.
The PPase was solubilized from the sperm membrane by treating it with 0.1 N
NaOH at pH 11.4 and the solubilized enzyme was partially purified by
concanavalin A-sepharose affinity chromatography and high-performance liquid
chromatography (HPLC), revealing it to be a 520-kDa protein. The PPase gave a
single protein band in native polyacrylamide gel electrophoresis (PAGE), but
in the presence of SDS it resolved into multiple proteins (35–170 kDa)
showing that the isolated enzyme contained a few contaminating proteins. The
enzyme is a glycoprotein because it binds with high affinity to concanavalin
A. It was maximally active at pH 8.0 and its activity was not dependent on
bivalent metal ions. The enzyme is a specific phosphatase as it displayed
higher affinity for dephosphorylation of large molecular weight phosphate
esters. The PPase showed broad substrate specificity for the dephosphorylation
of a variety of proteins. The membrane-associated PPase was strongly
(70–80%) inhibited by detergents (0.5%) such as Nonidet
P-40, Lubrol PX, Triton X-100 and Tween-20. Pyrophosphate (5 mM) and
orthovanadate (400 M) had no significant effect on the activity of the
isolated PPase whereas polyamines such as spermine (10 mM) nd spermidine (10
mM) slightly inhibited (20%) the enzymatic activity. Inorganic
phosphate (10 mM) and NaF (10 mM), the well-known inhibitors of the cytosolic
PPases, had no appreciable effect on the activity of PPase M-I, indicating
that the membrane-bound PPase is distinct from the cytosolic PPases. The
enzyme was radiolabelled when the intact spermatozoa were subjected to
lactoperoxidase-mediated radioiodination reaction. The results show that the
PPase M-I is an ecto-enzyme that may play an important role in sperm
physiology by causing the dephosphorylation of the sperm outer surface
phosphoproteins.
Subject
Developmental Biology,Endocrinology,Genetics,Molecular Biology,Animal Science and Zoology,Reproductive Medicine,Biotechnology
Cited by
9 articles.
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