Search PubMedSearch

SEARCH · Search PubMed

Results for “Lactate dehydrogenase C4”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

The tentative amino acid sequencing of lactate dehydrogenase C4 by X-ray diffraction analysis.

A tentative amino acid sequence of mouse testicular lactate dehydrogenase C4 was deduced from an electron density map and comparison with five other known lactate dehydrogenase sequences. The amino acid composition determined by chemical analysis agrees reasonably well with the present results. Necessary changes in amino acids were largely conservative and confined to the external portions of the molecule. Residues in the Q and P subunit contact regions were particularly well conserved as were most internal residues. The minimum base change/codon was similar between the C and H isoenzymes and between the C and M isoenzymes.

Amino Acid Sequence

Lactate dehydrogenase C4 in male sex accessory glands of normal mice and in testes of sex-reversed mice.

Lactate dehydrogenase (LDH) C4 activity was observed in testis extracts of sex-reversed mice (Sxr) and in male sex accessory gland (seminal vesicle and prostate) extracts from C3H/He and C57BL/Go mice. These results reflect either (1) the presence of low concentrations of germinal cells in these tissues; or (2) the synthesis of LDH-C4 by somatic cells in Sxr testes and normal male sex accessory glands.

Alcohol Oxidoreductases

Electrophoretic analyses of lactate dehydrogenase C4 in testes and vesicular glands of normal and male sterile translocation mice.

Lactate dehydrogenase (LDH) C, activity was observed in testis extracts from normal mice but was progressively reduced in mice carrying the male-sterile translocations T31H, T32H, T37H, T38H, T40H and T42H, with no detectable activity being observed in the last two mice. None of the vesicular gland extracts from these male-steriles showed LDH-C4 activity, unlike normal mice. The differential LDH-C4 activity in male-sterile testes is interpreted as reflecting the varying stages of the spermatogenic defect during meiosis. In general, early meiotic defects exhibited no LDH-C4 activity whereas late stage (usually after metaphase-1 stage) defect animals exhibited some activity. The results also provide evidence for contaminating sperm being the source of normal vesicular gland LDH-C4 activity.

Animals

The structure of mouse testicular lactate dehydrogenase isoenzyme C4 at 2.9 A resolution.

The structure of lactate dehydrogenase isoenzyme C4 from mouse testes was solved at 2.9 A resolution using the technique of molecular replacement. The electron density map revealed a ternary-like configuration of the flexible loop peptide although density corresponding to the coenzyme and substrate molecules was not present. Apparently the apo-lactate dehydrogenase molecule in solution is in a dynamic equilibrium between the O (loop open as found in dogfish apo-lactate dehydrogenase M4) and C (loop closed as found in a variety of ternary complexes) conformations. During crystallization of the apoenzyme one or the other conformers is selected. The apparent stability of the closed conformation for the apo-lactate dehydrogenase C4 molecule may in part explain the low catalytic turnover number of the C isoenzyme. A possible substitution of an arginine residue at position 30 may also be a contributing factor as well as allowing NADP to act as coenzyme.

Amino Acid Sequence

Substrate specificity of the lactate dehydrogenase isoenzyme C4 from human spermatozoa and a possible selective assay.

The activity of lactate dehydrogenase (EC 1.1.1.27) in normal human sperm lysates and in human heart and liver homogenates was determined by using a variety of 2-oxoacids as substrates. Sperm preparations were active with pyruvate, 2-oxobutanoate, 2-oxopentanoate and 2-oxohexanoate, while heart and liver extracts utilized only pyruvate and 2-oxobutanoate. Selective staining after gel electrophoresis indicated that the fraction corresponding to lactate dehydrogenase C4, the sperm-specific isoenzyme, was responsible for the utilization of substrates with a linear chain of 3 to 6 carbon atoms. The use of 5 mM 2-oxohexanoate allowed the selective determination of isoenzyme C4 in preparations containing different lactate dehydrogenase molecular forms.

Caproates

Strain differences in the immune response of mice to homologous sperm-specific lactate dehydrogenase (LDH-C4).

The sperm-specific isozyme of murine lactate dehydrogenase (LDH-C4) was injected into female mice of various strains. Two regulatory phenotypes characterize the resultant immunity to LDH-C4: one is manifested by high, intermediate or low levels of response, the other by the immediate or delayed maturation of peak titer. The response of several strains can be classified as high (SWR, SJL, BABL/c, C3H/He) and intermediate to low (A, CBA, DBA/2, DBA/1, C57BL/6) according to the level of antibody production and cell mediated immunity. BALB/c, SJL and SWR strains are immediate responders while DBA/2 and C3H/He mice are clearly delayed responders. Maturation and magnitude of response do not appear to be related. Both the antibody and cell mediated responses are T-dependent, but are not obviously associated with Ig allotype or H-2 regulation.

Animals

LDHC4 promotes ovarian cancer progression through H4K12 lactylation to regulate PGK1 expression and modulate glycolysis.

OBJECTIVE: Ovarian cancer (OC) pathogenesis involves metabolic and epigenetic alterations, yet the underlying mechanisms remain unclear. Here, we sought to investigate the role and regulatory mechanism of lactate dehydrogenase C4 (LDHC4) in OC progression. METHODS: Multi-omics approaches were employed, including analyses of The Cancer Genome Atlas (TCGA) and Genotype-Tissue Expression (GTEx) cohorts, tissue microarrays, molecular biology experiments, and in vivo mouse models. LDHC4 expression was modulated in OC cell lines (A2780 and ES-2) to assess its effects on proliferation, migration, invasion, and metastasis. Lactylproteomic profiling, cleavage under targets and tagmentation (CUT&Tag), and chromatin analyses were conducted to explore epigenetic mechanisms. The functional role of the downstream glycolytic enzyme phosphoglycerate kinase 1 (PGK1) was examined using pharmacological inhibition. Molecular docking and xenograft models were used to evaluate the therapeutic potential of targeting H4K12lac (lactylation of histone H4 at lysine 12). RESULTS: LDHC4 was significantly overexpressed in OC tissues and associated with poor overall survival (OS) (hazard ratio [HR]&#x2009;=&#x2009;4.017, 95% confidence interval [CI]: 2.308&#x2013;6.989, P&#x2009;<&#x2009;0.0001). It promoted proliferation, migration, invasion, and metastasis in vitro and in vivo. LDHC4 overexpression increased global lactylation, notably upregulating H4K12lac, which was enriched at the PGK1 promoter. Inhibition of PGK1 with CBR-470-1 (half-maximal inhibitory concentration [IC&#x2085;&#x2080;]&#x2009;=&#x2009;14.56 &#xb5;M) suppressed OC growth and metastasis. Importantly, Elbasvir, identified as a high-affinity H4K12lac inhibitor, significantly reduced tumor burden in mouse xenografts across multiple doses (10&#x2013;20&#xa0;mg&#xb7;kg&#x207b;&#xb9;) and downregulated H4K12lac and Ki-67 expression. CONCLUSION: We conclude that LDHC4 promotes OC progression via lactylation-mediated epigenetic upregulation of PGK1. Targeting this pathway through H4K12lac inhibitors such as Elbasvir thus emerges as a viable therapeutic approach for OC.

Female

Structural relatedness of mouse lactate dehydrogenase isozymes, A4 (muscle), B4 (heart), and C4 (testis).

Three homotetrameric lactate dehydrogenase isozymes, LDH-M(A4), LDH-H(B4), and LDH-X(C4), from DBA/2J mice have been purified by affinity chromatography. The amino acid compositions of the subunits A,B, and C, based on a molecular weight of 36,000, have been determined. The compositional relatedness of these isozymes indicates that subunits A (muscle) and B (heart) are more closely related to each other than to subunit C (testis). Tryptic peptide maps and amino acid compositions of some active site peptides apear to confirm the compositional relatedness among these isozymes. The sequence of the loop region of mouse C subunit seems to be markedly different from all known A and B sequences, and the structural and functional implications are discussed.

Amino Acids

Genetic manipulation in higher organisms. I. Goldfish ova as materials of operation, mRNA mediated alteration of the liver specific isozymes.

Both crucian and carp egg-mRNAs were found to mediate the transformation of goldfish tail from the double (veil-shaped) to the single (fork-shaped). Livers of these single tailed goldfish were tested for genetic change using lactate dehydrogenase isozymes (LDH) as marker. Electrophoresis of liver extracts on starch gel showed that the liver specific LDH-C4 isozymes of both the egg-mRNA and liver-mRNA injected goldfish resembled the control goldfish except an additional intermediate band. The migration distance of this new band matched the third band of the hybrids (carp X goldfish). These findings lead to the conclusion that carp egg-mRNA contains a fraction partly responsible for liver development. Rat liver was found possessing the cathodally migrating C4 isozymes. Injection of rat liver-mRNA into goldfish eggs resulted in the intensification of the liver specific C4 isozymes. It appears therefore that the input informational molecules (liver-mRNA) and the output molecular products (liver C4 isozymes) are causally related. This causal relationship would pave the way for genetic manipulation in higher organisms.

Animals

Analyses of stage-specific multiple forms of lactate dehydrogenase and of cytochrome c during spermatogenesis in the mouse.

Spermatogenesis is a programmed developmental process characterized by the inactivation of certain genes and the activation of other, testis-specific genes. Synthesis of unique gene products such as LDH-C4 and cytochrome ct occurs only at precise stage of germ cell formation. The developmental sequences of gene activation for these proteins was observed by immunohistochemical procedures. LDH-C4 is first detectable during mid-pachytene of the primary spermatocyte. The C subunits appear to be uniformly distributed throughout the cytoplasm of the spermatocyte. The mid-pachytene stage also marks the first appearance of cytochrome ct. The association of this electron transport protein with spermatocyte mitochondria is reflected in a granular fluorescence of specific antibody-treated sections of testis. Neither the C subunit of LDH, nor cytochrome ct appear in leptotene or early pachytene primary spermatocytes. These analyses indicate that there is stage-specific protein synthesis in the primary spermatocyte which is characterized by differential activation of the LDH-C locus and of the gene coding for cytochrome ct.

Age Factors

Convergence of active center geometries.

Comparisons have been made between the active center geometries of lactate dehydrogenase and glyceraldehyde-3-phosphate dehydrogenase, chymotrypsin and papain, and glyceraldehyde-3-phosphate dehydrogenase and papain. In the dehydrogenases, orientation of the nicotinamide ring about the glycosidic bond is determined by the substrate stereochemistry. The proper positioning of the carboxyamide moiety allows for the close approach of the C4 atom on the nicotinamide and the reactive carbon of the substrate. It follows that, once the conformation of the substrate or substrate intermediate has been established with respect to the functional groups in the enzyme, the A- or B-side specificity of the nicotinamide ring is predetermined. Hence, dehydrogenases which are divergently evolving from a common precursor must maintain the nicotinamide specificity if the protein fold of the catalytic domain is conserved. The tetrahedral intermediates produced during acylation of chymotrypsin and papain are found to be of opposite hand, while those of papain and glyceraldehyde-3-phosphate dehydrogenase can be regarded to be of the same hand. Thus the serine proteases, subtilisin and those of the chymotrypsin family, are of one hand while the cysteine enzymes, glyceraldehyde-3-phosphate dehydrogenase and papain, are of the other.

Binding Sites

Extracellular fluid of the kidney preserved by the Collins technique.

Hilar drainage fluid of dog kidneys was analyzed as an approximation to renal extracellular fluid after preservation by flushing with chilled high K-low Na solution (Collins C4) followed by ice-cold storage for 24 and 48 hr in a bath of flushing medium. Compared with the medium, Na and Cl were increased to 30 mM/liter and K decreased slightly to 93 mM/liter. Glucose decreased, whereas lactate, lactic dehydrogenase, and creatine phosphokinase increased by significant amounts in both the drainage fluid and bath. The inulin space of the undrained kidney average 37% of wet weight. Calculated intracellular Na and Cl concentrations averaged 50 and 37 mM/kg cell water while K remained within normal limits. A significant fraction of red blood cells retained during initial flushing entered the effluent during storage. Bath and effluent composition of a human cadaver kidney approximated those of a dog.

Animals

Analysis of specific proteins in prostatic fluid for detecting prostatic malignancy.

In an attempt to identify an indicator(s) specifically associated with prostatic cancer prostatic fluid was collected by rectal massage from patients with prostatic cancer, prostatitis, benign prostatic hyperplasia and from those without recognized prostatic lesions in order to measure various immunoproteins. The proteins examined were IgG, IgA, IgM, complements C3 and C4, and transferrin. Prostatic fluid samples were subjected first to immunoelectrophoresis. Distinct differences in C3, C4 and transferrin concentrations were noted between patients with prostatic cancer and other patients. These proteins were stained heavily in the electrophoresis gels of fluid from cancer patients but were either missing or lightly stained in all other groups. These qualitative determinations were replaced subsequently by a quantitative measurement using the radial immunodiffusion technique. Results of the latter study confirmed the aforementioned observations and indicated that the levels of C3, C4 and transferrin in the prostatic fluid of cancer patients were elevated significantly when compared to all other patient groups. These observations indicate that the measurement of complements C3 and C4, and transferrin in the prostatic fluid may assist in the identification of patients with a high risk of prostatic cancer.

Body Fluids

Pathway of succinate and propionate formation in Bacteroides fragilis.

Cell suspensions of Bacteroides fragilis were allowed to ferment glucose and lactate labeled with (14)C in different positions. The fermentation products, propionate and acetate, were isolated, and the distribution of radioactivity was determined. An analysis of key enzymes of possible pathways was also made. The results of the labeling experiments showed that: (i) B. fragilis ferments glucose via the Embden-Meyerhof pathway; and (ii) there was a randomization of carbons 1, 2, and 6 of glucose during conversion to propionate, which is in accordance with propionate formation via fumarate and succinate. The enzymes 6-phosphofrucktokinase (pyrophosphate-dependent), fructose-1,6-diphosphate aldolase, phosphoenolpyruvate carboxykinase, malate dehydrogenase, fumarate reductase, and methylmalonyl-coenzyme A mutase could be demonstrated in cell extracts. Their presence supported the labeling results and suggested that propionate is formed from succinate via succinyl-, methylmalonyl-, and propionyl-coenzyme A. From the results it also is clear that CO(2) is necessary for growth because it is needed for the formation of C4 acids. There was also a randomization of carbons 1, 2, and 6 of glucose during conversion to acetate, which indicated that pyruvate kinase played a minor role in pyruvate formation from phosphoenolpyruvate. Phosphoenolpyruvate carboxykinase, oxaloacetate decarboxylase, and malic enzyme (nicotinamide adenine dinucleotide phosphate-dependent) were present in cell extracts of B. fragilis, and the results of the labeling experiments agreed with pyruvate synthesis via oxaloacetate and malate if these acids are in equilibrium with fumarate. The conversion of [2-(14)C]- and [3-(14)C]lactate to acetate was not associated with a randomization of radioactivity.

Acetates

Complement activation by the alternative pathway and macrophage enzyme secretion in the pathogenesis of chronic inflammation.

A number of stimuli known to induce acid hydrolase secretion from cultured macrophages were examined for their ability to activate C3 via the alternative pathway of the complement system. Loss of haemolytically active C3 was checked in normal and C4-deficient guinea-pig serum. For comparison the interactions of cultured macrophages with other agents well known as potent activators of the alternative pathway of the complement system have been investigated. As judged by their activity in these assays, group A streptococcal cell walls, different carrageenan preparations, dental plaque and Actinomyces viscosus were all capable of initiating the alternative pathway but differed with respect to their potency and their ability to inhibit C3 turnover at high concentrations. Zymosan, some carrageenans, polyanethol sulphonate, and Corynebacterium parvum all induce the release of hydrolytic enzymes from macrophages in culture, even in the absence of serum in the medium. The release is time- and dose-dependent and is not associated with loss of the cytoplasmic enzyme lactate dehydrogenase or any other sign of cell death. The parallelism between the capacity of several agents to activate the complement system via the alternative pathway and to induce inflammatory responses in vivo and selective lysosoma enzyme secretion from cultures of macrophages is discussed.

Animals