Showing posts with label proteins. Show all posts
Showing posts with label proteins. Show all posts

Monday, October 29, 2018

Three proteins may play key roles in female fertility and cancer biology

female fertility and proteins, female fertility proteins and cancer biology
When a good egg goes bad. The bright green shows spindles, the machinery that helps chromosomes divide. The pink shows one of three key proteins growing out of control after another protein regulator is deleted. The blue shows the chromosomes (DNA). Credit: Alexandra L. Nguyen
Three proteins regulate each other with surprising twists and turns in female mouse eggs, a finding that may play an important role in female fertility and cancer biology, according to Rutgers-led research.

The unexpected complexity in how these proteins regulate one another does not occur in any other healthy cell type, said study senior author Karen Schindler, an associate professor who specializes in infertility research in the Department of Genetics at Rutgers University-New Brunswick.

The three proteins are Aurora kinase A (AURKA), AURKB and AURKC, and the research is published in the journal Current Biology.

"Our research could provide a way to diagnose and perhaps treat certain types of infertility that end in early miscarriage," said Schindler, who works in the School of Arts and Sciences. "This work also impacts cancer biology research because we suspect that the inter-protein regulation that occurs in eggs also occurs in certain types of aggressive cancers. Therefore, the findings could be useful in thinking about precision medicine treatments for cancer patients."

Schindler, an internationally recognized expert in female gamete (egg) biology, said she specializes in infertility research because she's fascinated by the surprisingly high frequency of infertility worldwide. One in six couples struggle to start a family in the U.S. alone, she noted.

The next steps for reproductive biology include studying the genomes of infertile patients to see if mutations in their genes represent a significant percentage of the patient population with poor outcomes in an in vitro fertilization (IVF) clinic, Schindler said. The next steps for cancer biology include carefully evaluating cancers that have all three proteins and finding ways to harness their interactive regulation into a cancer therapeutic.

Scientists at the Academy of Sciences of the Czech Republic and the Spanish National Cancer Research Centre contributed to the study.
 

Tuesday, December 13, 2016

Scientists show NLRP2 protein's role in maintaining fertility later in life

proteins and fertility,NLRP2 protein and femaly fertility
via flickr.com
"Led by Prof. Mohamed Lamkanfi (VIB-Ghent University), researchers have demonstrated in animal models that a protein called NLRP2 plays an important role in early embryogenesis, the process of cell division in fertilized eggs that occurs before they implant into the lining of the uterus. In addition, the protein was shown to become more important with increasing maternal age, as blocking NLRP2 in eggs prevented them from developing in blastocysts. As a similar protein exists in humans, these insights may lead to greater understanding of reproductive disorders and novel paths to treatment. The study was recently published in the Journal of Experimental Medicine.

About one in six couples experience fertility issues, and maternal age is considered the primary factor driving the demand for in-vitro fertilization and other reproductive technologies. Although scientists have a good understanding of the roles hormones play in embryonic development, little is known about the mechanisms that govern early embryogenesis. The study conducted by Prof. Lamkanfi and his team have helped to shed light on age-linked elements that influence embryonic development.

No role in immunity or inflammation

Before this research, scientists had widely believed that the NLRP2 protein played a role in the immune system, as similar proteins were found to have key roles in controlling infections and regulating inflammation. Prof. Lamkanfi's team had initially expected similar findings for NLRP2 and focused the study accordingly -- but they were surprised not to find any link between the protein and immune functions. Prof. Mohamed Lamkanfi (VIB-UGent): "Contrary to expectations, we failed to find any role for NLRP2 in immunity and inflammation. As a result, we refocused our studies on reproduction after discovering that NLRP2 is specifically produced by egg cells, or oocytes, showing that the protein is critical to the maintenance of oocyte quality later in life..."