Abstract
The schedule of spermatogenesis is determined from the times necessary for cells labeled with tritium thymidine during premeiotic DNA synthesis to pass through the successive spermatogenic stages. A transition from a typically somatic histone rich in lysine, to a histone rich in arginine is shown to occur during spermatid stages. A later shift to a protamine is observed in the maturing sperm. These changes are characterized by the use of in situ staining methods. The transition to an arginine-rich histone is accompanied by incorporation of tritium-labeled arginine, hence reflects synthesis of new protein. Comparison of the timing of arginine and thymidine incorporation, and independent measurements of DNA, show that in contrast to the case of premitotic chromosome duplication, the histone synthesis in the spermatid is unaccompanied by DNA synthesis. During the initial histone change, fine filaments are formed within the nucleus, which aggregate to form lamellae. This fine structure is lost during maturation of the sperm.
Keywords
HISTONES/chemistry
SPERMATOZOA
MeSH Terms
Arginine
Cell Nucleus
DNA
Histones/chemistry
Humans
Lysine
Male
Protamines
Snails
Sperm Maturation
Spermatids
Spermatogenesis
Spermatozoa
Staining and Labeling
Thymidine
Tritium
Chemicals
Histones
Protamines
Tritium
DNA
Arginine
Lysine
Thymidine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
BLOCH D P
HEW H Y
References (17)
17 references, click to expand
-
A comparative biochemical study of nucleohistones from different vertebrates.
Nature. 1958 Feb 1;181(4605):343
PMID: 13504185
-
The labelling of mouse sperm by adenine-8-C-14.
Exp Cell Res. 1955 Dec;9(3):596-9
PMID: 13277521
-
Autoradiographic and microphotometric studies of desoxyribose nucleic acid during microgametogenesis in Lilium longiflorum.
Chromosoma. 1954;6(6-7):489-521
PMID: 13209729
-
The desoxyribose nucleic acid content of animal nuclei.
Physiol Zool. 1950 Jul;23(3):169-98
PMID: 15440320
-
An attempt of using biochemical methods for cytochemical problems; the desoxyribonucleoprotein of spermatogenetic cells of bull testis.
Exp Cell Res. 1957;13(Suppl 4):279-83
PMID: 13490416
-
Spermiogenesis of rat, mouse, hamster and guinea pig as revealed by the periodic acid-fuchsin sulfurous acid technique.
Am J Anat. 1952 Mar;90(2):167-215
PMID: 14923625
-
The amino acid composition and some properties of histones.
J Gen Physiol. 1951 Mar 20;34(4):439-50
PMID: 14824510
-
A microphotometric study of the syntheses of desoxyribonucleic acid and nuclear histone.
J Biophys Biochem Cytol. 1955 Jan;1(1):17-28
PMID: 14381425
-
A Selective Staining Method for the Basic Proteins of Cell Nuclei.
Proc Natl Acad Sci U S A. 1953 Oct;39(10):991-9
PMID: 16589382
-
Histones with high lysine content.
J Gen Physiol. 1955 Jan 20;38(3):405-13
PMID: 13221780
-
The quantitative cytochemical estimation of arginine.
Exp Cell Res. 1957 Feb;12(1):120-5
PMID: 13405014
-
Cell specificity of histones.
Nature. 1950 Nov 4;166(4227):780-1
PMID: 14780242
-
Abnormal properties of histones from malignant cells.
Nature. 1954 Sep 25;174(4430):580-5
PMID: 13203581
-
[The desoxyribonucleoproteins in the cell nucleus and the mechanism of transformation of nucleohistone into nucleoprotamine].
C R Hebd Seances Acad Sci. 1958 May 28;246(21):3128-30
PMID: 13547553
-
Spermatogenesis in animals as revealed by electron microscopy. II. Submicroscopic structure of developing spermatid nuclei of grasshopper.
J Biophys Biochem Cytol. 1957 Sep 25;3(5):663-8
PMID: 13475383
-
Duration of spermatogenesis in the mouse and timing of stages of the cycle of the seminiferous epithelium.
Am J Anat. 1956 Nov;99(3):507-16
PMID: 13402729
-
Chemical differentiation of nuclear proteins during spermatogenesis in the salmon.
J Biophys Biochem Cytol. 1956 Mar 25;2(2):109-14
PMID: 13319375