PubMed Health⌕ Search

Biomedical subjects

M Matzuk

Publications and source records attributed to M Matzuk.

3 recordsLinked to original sources

Sohlh1 is essential for spermatogonial differentiation.

Spermatogonia are adult germline stem cells that can both self-renew and differentiate into spermatocytes. Little is known about factors necessary for spermatogonial differentiation. We identified a novel germ-cell-specific transcription factor that we named Sohlh1 (testis and ovary expressed basic helix-loop-helix (bHLH) transcription factor). In males, Sohlh1 is preferentially expressed in prespermatogonia and Type A spermatogonia. Loss of Sohlh1 causes infertility by disrupting spermatogonial differentiation into spermatocytes. Seven-day-old testes without Sohlh1 still express the testis-specific transcription factors Etv5, Taf4b, Zfp148, and Plzf, overexpress a novel Tohlh2 bHLH transcription factor, but lack LIM homeobox gene Lhx8 and show reduced expression of Ngn3. Sohlh1 represents the first testis-specific bHLH transcription factor that is essential for spermatogonial differentiation.

Animals↗

Discovery of germ cell-specific transcripts by expressed sequence tag database analysis.

OBJECTIVE: To identify transcripts whose expression is restricted to germ cells. DESIGN: Expressed sequence tags (ESTs) from unfertilized egg libraries were utilized to perform in silico subtraction and identify germ cell-specific transcripts. SETTING: Baylor College of Medicine, Houston, Texas. ANIMAL(S): C57BL/6J/129SvEv hybrid. INTERVENTION(S): Tissue harvesting from mice. MAIN OUTCOME MEASURE(S): Identification of germ cell-specific transcripts. RESULT(S): We have used the Unigene collection of mouse cDNA libraries to identify ESTs derived from unfertilized egg libraries. A total of 3,499 ESTs were identified from Knowles Solter and Ko unfertilized egg cDNA libraries. In silico subtraction identified 258 ESTs, which were found in these unfertilized egg libraries, but not in adult mouse tissue cDNA libraries. We performed reverse transcription polymerase chain reaction (RT-PCR) on multiple adult tissues with 43 selected ESTs and found 5 of them where expression was absent in heart, lung, liver, brain, spleen, stomach, intestines, kidneys, and uterus, but restricted to ovaries and testes. Three ESTs were further analyzed, and they were exclusively localized to the oocytes by in situ hybridization. CONCLUSION: We have shown that utilization of publicly available ESTs from murine EST libraries is a simple and rapid in silico approach to the identification of transcripts preferentially expressed in germ cells.

Animals↗

Functional conservation of atonal and Math1 in the CNS and PNS.

To determine the extent to which atonal and its mouse homolog Math1 exhibit functional conservation, we inserted (beta)-galactosidase (lacZ) into the Math1 locus and analyzed its expression, evaluated consequences of loss of Math1 function, and expressed Math1 in atonal mutant flies. lacZ under the control of Math1 regulatory elements duplicated the previously known expression pattern of Math1 in the CNS (i.e., the neural tube, dorsal spinal cord, brainstem, and cerebellar external granule neurons) but also revealed new sites of expression: PNS mechanoreceptors (inner ear hair cells and Merkel cells) and articular chondrocytes. Expressing Math1 induced ectopic chordotonal organs (CHOs) in wild-type flies and partially rescued CHO loss in atonal mutant embryos. These data demonstrate that both the mouse and fly homologs encode lineage identity information and, more interestingly, that some of the cells dependent on this information serve similar mechanoreceptor functions.

Animals↗