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Biology subjects

Rao, H.

Publications and source records attributed to Rao, H..

3 recordsLinked to original sources

A non-canonical role for p27Kip1 in restricting proliferation of corneal endothelial cells during development

The cell cycle regulator p27Kip1 is a critical factor controlling cell number in many lineages. While its anti-proliferative effects are well-established, the extent to which this is a result of its function as a cyclin-dependent kinase (CDK) inhibitor or through other known molecular interactions is not clear. To genetically dissect its role in the developing corneal endothelium, we examined mice harboring two loss-of-function alleles, a null allele (p27-) that abrogates all protein function and a knockin allele (p27CK-) that targets only its interaction with cyclins and CDKs. Whole-animal mutants, in which all cells are either homozygous knockout or knockin, exhibit identical proliferative increases ([~]0.6-fold) compared with wild-type tissues. On the other hand, use of mosaic analysis with double markers (MADM) to produce infrequently-occurring clones of wild-type and mutant cells within the same tissue environment uncovers a roughly three- and six-fold expansion of individual p27CK-/CK- and p27-/- cells, respectively. Mosaicism also reveals distinct migration phenotypes, with p27-/- cells being highly restricted to their site of production and p27CK-/CK- cells more widely scattered within the endothelium. Using a density-based clustering algorithm to quantify dispersal of MADM-generated clones, a four-fold difference in aggregation is seen between the two types of mutant cells. Overall, our analysis reveals that, in developing mouse corneal endothelium, p27 regulates cell number by acting cell autonomously, both through its interactions with cyclins and CDKs and through a cyclin-CDK-independent mechanism(s). Combined with its parallel influence on cell motility, it constitutes a potent multi-functional effector mechanism with major impact on tissue organization.

developmental biology

Di-Ras2 Promotes Renal Cell Carcinoma Formation by Activating the MAPK Pathway in the Absence of VHL

Clear cell renal cell carcinoma (ccRCC) is one of the most common and lethal human urological malignancies in the world. The pathological drivers for ccRCC are still poorly understood. One of them is the Ras family of small GTPases that function as \"molecular switches\" in many diseases including ccRCC. Among them, Di-Ras2 encodes a 26-kDa GTPase that shares 60% homology to Ras and Rap. Yet little is known about the biological function(s) of Di-Ras2. In this study, we found that Di-Ras2 was upregulated in ccRCC, and promoted the proliferation, migration and invasion of human ccRCC cells in the absence of von Hippel-Lindau (VHL). Mechanistically, Di-Ras2 induces and regulates ccRCC formation by modulating phosphorylation of the downstream effectors and activating the MAPK signaling pathway. Moreover, Di-Ras2 interacts with E3 ubiquitin ligase, VHL, which facilitates the ubiquitination and degradation of Di-Ras2. Together, these results indicate a potential function of Di-Ras2 as an oncogene and biomarker in ccRCC, and these data provide a new perspective of the relationship between VHL and the MAPK pathway in ccRCC tumorigenesis.

cancer biology

Preserved global cerebral blood flow accounts for youthful processing speed in older adults

Preserved cognitive performance is one of the key contributors to successful aging. The processing speed theory and prefrontal executive theory - are competing theories regarding the general causes of cognitive aging. Here, we used a theoretically-driven framework to investigate the neural correlates of older adults with preserved processing speed. Older adults with youth-like processing speed (SuperAgers) were compared with normal aged adults (TypicalAgers) using neuroimaging methods. Global cerebral blood flow (CBF) accounted for approximately 45% of the variance in processing speed, while neither regional CBF nor other structural measures predicted additional variance. In addition, despite having significantly cortical thinning, SuperAgers still shown comparable global CBF levels with young adults. These results support the global mechanism suggested by processing speed theory and indicate that global CBF may serve as a biomarker of cognitive aging.

neuroscience