PubMed HealthSearch

PubMed · 55033

The extraction and partial purification of the deoxycholate-soluble matrix protein from human plantar horny layer.

Abstract

The electron-dense, amorphous matrix protein in human horny cells was extracted with deoxycholate. The deoxycholate-soluble material was partially purified by differential centrifugation and molecular sieve chromatography. Approximately 44% of the total protein was extracted into the 270,000 g supernatant fraction. Macroaggregates with histochemical characteristics indentical with those in situ keratohyalin granules were formed upon dialysing the 270,000 g supernatant fraction against redistilled water. Antibody was raised to the purified material of the initial peak from the Sepharose 6B column. The resulting antiserum yielded a single precipitin line when tested against the immunizing antigen. Electrophoresis in the presence of sodium dodecylsulfate showed this antigenic material to be heterogeneous. It was immunologically homogeneous when this antigenic material was examined by immuno-electrophoresis. Since the antibody was localized on the keratohyalin granules of human planter skin by indirect immunofluorescence, the partially purified, deoxycholate-soluble material from human plantar horny layers is considered to originate from keratohyalin granules. Amino acid analysis revealed a high content of glycine, glutamic acid and aspartic acid, and a low content of histidine and leucine.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T Tezuka. 1975. The extraction and partial purification of the deoxycholate-soluble matrix protein from human plantar horny layer.. https://pubmed.ncbi.nlm.nih.gov/55033/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Chimeric structural isomer fragments as cost-efficient internal standards for amino acid quantification by mass spectrometry.

Amino acid (AA) profiles from body fluids such as blood and urine are clinical indicators for diagnosing metabolic and hepatic diseases. Current quantitative methods, such as liquid chromatography-mass spectrometry (LC-MS) with isotopically labelled internal standards (ISs), are costly and technically demanding. This study proposes a cost-efficient alternative using structural isomers as ISs in a direct liquid infusion (DLI) tandem mass spectrometry (MS/MS) approach. The method leverages chimeric spectra and fragment intensity ratios to quantify AAs, demonstrating high linearity and precision even with a 3D ion trap mass analyser. This approach offers a viable strategy for AA quantification in preventive medicine, particularly for screening metabolic diseases such as phenylketonuria, diabetes, and liver dysfunction.

Amino Acids

Identification and quantitation of nucleosides, bases and other UV-absorbing compounds in serum, using reversed-phase high-performance liquid chromatography. I. Chromatographic methodology.

A comprehensive investigation of the high-performance liquid chromatographic separation of nucleosides, their bases and other low-molecular-weight UV-absorbing compounds that might be found in serum is reported. A buffer-methanol gradient was used in conjunction with chemically bonded, microparticulate columns to separate many of the biologically important compounds under study in minimal time with maximal resolution. Retention data, absorbance ratios (280/254 nm) and fluorescence responses are reported for 86 nucleosides, bases, nucleotides and other UV-absorbing compounds commonly encountered in biological studies.

Amino Acids